Showing posts with label C-RAN. Show all posts
Showing posts with label C-RAN. Show all posts

Friday, 29 June 2018

The C-RAN (Centralized Radio Access Network) Ecosystem: Investment, Future Growth and Major Key Players 2030

Researchmoz added Most up-to-date research on " The C-RAN (Centralized Radio Access Network) Ecosystem: 2017 - 2030 - Opportunities, Challenges, Strategies & Forecasts" to its huge collection of research reports.

Centralized RAN or C-RAN is an architectural shift in RAN (Radio Access Network) design, where the bulk of baseband processing is centralized and aggregated for a large number of distributed radio nodes. In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as baseband pooling, enhanced coordination between cells, virtualization, network extensibility, smaller deployment footprint and reduced power consumption.

Initially popularized by Japanese and South Korean mobile operators, C-RAN technology is beginning to gain momentum worldwide with major tier 1 operators –  including Verizon Communications, AT&T, Sprint, China Mobile, Vodafone, TIM (Telecom Italia Mobile), Orange and Telefónica –  seeking to leverage the benefits of centralized baseband processing.

Get PDF for More Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=1237586

global investments in C-RAN architecture networks will reach nearly $9 Billion by the end of 2017. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020. These investments will include spending on RRHs (Remote Radio Heads), BBUs (Baseband Units) and fronthaul transport network equipment.

The “C-RAN (Centralized Radio Access Network) Ecosystem: 2017 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the C-RAN ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models, operator case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for C-RAN infrastructure investments from 2017 till 2030. The forecasts cover 3 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

Key Findings:

The report has the following key findings:

- Expected to reach nearly $9 Billion in global spending by the end of 2017, C-RAN is increasingly becoming the preferred approach to deploy future mobile networks. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020.
- Small cells are also beginning to be deployed in a C-RAN architecture to leverage the benefits of resource pooling and multi-cell coordination. This trend is particularly prevalent in the indoor and enterprise segments, with a number of dedicated vendor solutions such as CommScope's OneCell, SpiderCloud's E-RAN, Ericsson's Radio Dot, and Huawei's LampSite.
- Mobile operators are exploring multiple baseband functional split options for C-RAN implementation, as they seek to ease the transition to 5G networks while reducing fronthaul costs.
- By the end of 2020, SNS Research estimates that vRAN/Cloud RAN deployments with virtualized baseband processing will account for nearly 20% of all C-RAN investments.
- The vendor arena is continuing to consolidate with several prominent M&A deals such as Mavenir Systems' recent merger with C-RAN specialist Ranzure Networks, which has positioned the company as an end-to-end provider of 5G-ready mobile network solutions.

Topics Covered:

The report covers the following topics:

- C-RAN ecosystem
- Market drivers and barriers
- Key architectural components (RRH, BBU and fronthaul)
- Competing RAN architectures including traditional macrocell base stations, standalone small cells and DAS (Distributed Antenna Systems)
- Key trends including baseband functional splitting, enterprise RAN, vRAN (Virtualized RAN)/Cloud RAN, MEC (Mobile Edge Computing) and RANaaS (RAN-as-a-Service)
- Fronthaul networking technologies and interface options
- C-RAN deployment models and mobile operator case studies
- Regulatory landscape and standardization
- Industry roadmap and value chain
- Profiles and strategies of over 230 leading ecosystem players including enabling technology providers, radio equipment suppliers, BBU vendors, fronthaul network equipment vendors and mobile operators
- Strategic recommendations for ecosystem players including C-RAN solution providers and mobile operators
- Market analysis and forecasts from 2017 till 2030

Forecast Segmentation:

Market forecasts are provided for each of the following submarkets and their subcategories:

- Submarket Segmentation
- RRHs (Remote Radio Heads)
- BBUs (Baseband Units)
- Fronthaul
- Air Interface Technology Segmentation
- 3G & LTE
- 5G NR (New Radio)
- Network Architecture Segmentation
- Non-Virtualized C-RAN
- vRAN/Cloud RAN
- Deployment Model Segmentation
- Indoor
- Outdoor
- Cell Size Segmentation
- Small Cells
- Macrocells
- Fronthaul Transport Network Technology Segmentation
- Dedicated Fiber
- WDM (Wavelength Division Multiplexing)
- OTN (Optical Transport Network)
- PON (Passive Optical Network)
- Ethernet
- Microwave
- Millimeter Wave
- G.Fast & Others
- Regional Markets
- Asia Pacific
- Eastern Europe
- Middle East & Africa
- Latin & Central America
- North America
- Western Europe

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2017-2030-opportunities-challenges-strategies-forecasts-report.html/toc

Key Questions Answered:

The report provides answers to the following key questions:

- How big is the C-RAN opportunity?
- What trends, challenges and barriers are influencing its growth?
- How is the ecosystem evolving by segment and region?
- What will the market size be in 2020 and at what rate will it grow?
- Which submarkets will see the highest percentage of growth?
- How can C-RAN facilitate the management of interference and LTE-Advanced features such as CoMP (Coordinated Multi-Point)?
- What are the benefits and drawbacks of each baseband functional split option?
- How can C-RAN reduce the TCO (Total Cost of Ownership) of RAN deployments?
- What are the prospects of wireless fronthaul technologies?
- Is Ethernet a feasible solution for fronthaul networking?
- How big is the market for vRAN/Cloud RAN networks?
- How can mobile operators future-proof their RAN investments for 5G upgrades?
- Who are the key market players and what are their strategies?
- What strategies should C-RAN solution providers and mobile operators adopt to remain competitive?

List of Companies Mentioned:

The following companies and organizations have been reviewed, discussed or mentioned in the report:

- 3GPP (3rd Generation Partnership Project)
- 3Roam
- 6WIND
- Accelink Technologies Corporation
- Accelleran
- Actelis Networks
- ADLINK Technology
- ADTRAN
- ADVA Optical Networking
- Advantech
- Airspan Networks
- Alpha Networks
- Alphabet
- Altiostar Networks
- Amarisoft
- América Móvil Group
- Anritsu Corporation
- APRESIA Systems
- Aquantia Corporation
- Argela
- ARIB (Association of Radio Industries and Businesses, Japan)
- Aricent
- ARM Holdings
- ARRIS International
- Artemis Networks
- Artesyn Embedded Technologies
- Artiza Networks
- ASOCS
- ASTRI (Hong Kong Applied Science and Technology Research Institute)
- AT&T
- ATIS (Alliance for Telecommunications Industry Solutions, United States)
- Aviat Networks
- Axxcelera Broadband Wireless
- Azcom Technology
- Baicells Technologies
- Benetel
- Blu Wireless Technology
- BluWan
- Boomsense/Bangxun Technology
- BridgeWave Communications
- Broadband Forum
- Broadcom
- BT Group
- CableFree (Wireless Excellence)
- Cadence Design Systems
- Calix
- Cambium Networks
- Casa Systems
- Cavium
- CBNL (Cambridge Broadband Networks Ltd.)
- CCI (Communication Components, Inc.)
- CCS (Cambridge Communication Systems)
- CCSA (China Communications Standards Association)
- cellXica
- Ceragon Networks
- CEVA
- China Mobile
- China Telecom
- China Unicom
- Ciena Corporation
- Cisco Systems
- Clavister
- Cobham Wireless
- Coherent Logix
- Collision Communications
- Comcores
- CommAgility
- CommScope
- Contela
- Corecess
- Coriant
- Corning
- Dali Wireless
- DASAN Zhone Solutions
- Datang Mobile
- Dell Technologies
- DragonWave
- eASIC Corporation
- E-Band Communications
- EBlink
- ECI Telecom
- EE
- Ekinops
- ELVA-1
- Eoptolink Technology
- Ericsson
- Ethernity Networks
- ETRI (Electronics & Telecommunications Research Institute, South Korea)
- ETSI (European Telecommunications Standards Institute)
- Exalt Wireless
- EXFO
- ExteNet Systems
- Extreme Networks
- Facebook
- Fairwaves
- Faraday Technology Corporation
- FastBack Networks
- FiberHome Technologies
- FibroLan
- Finisar Corporation
- Flex Logix Technologies
- Foxconn Interconnect Technology
- Fraunhofer FOKUS  (Institute for Open Communication Systems)
- Fraunhofer HHI (Heinrich Hertz Institute)
- Frog Cellsat
- Fujian Sunnada Network Technology
- Fujitsu
- Furukawa Electric Group
- GigaLight
- GlobalFoundaries
- Google
- HCL Technologies
- HFR
- Hisense
- Hitachi
- HPE (Hewlett Packard Enterprise)
- Huahuan
- Huawei
- HUBER+SUHNER
- HXI
- IBM Corporation
- IDT (Integrated Device Technology)
- IEEE (Institute of Electrical and Electronics Engineers)
- Imec International
- InCoax
- Infineon Technologies
- Infinera
- InfiNet Wireless
- InnoLight Technology
- InnoWireless
- Intel Corporation
- InterDigital
- Intracom Telecom
- IP Light
- ip.access
- IPITEK
- Iskratel
- IS-Wireless
- ITRI (Industrial Technology Research Institute, Taiwan)
- ITU (International Telecommunications Union)
- JMA Wireless
- JRC (Japan Radio Company)
- Juni Global
- Kathrein-Werke KG
- KDDI Corporation
- KEYMILE
- Keysight Technologies
- Kisan Telecom
- KMW
- KPN
- KT Corporation
- Lattice Semiconductor
- LG Uplus
- LightPointe Communications
- Lindsay Broadband
- Loea Corporation
- Lumentum
- Luminate Wireless
- MACOM Technology Solutions Holdings
- Maja Systems
- Maven Wireless
- Mavenir Systems
- MAX4G
- MaxLinear
- MEF (Metro Ethernet Forum)
- MegaFon
- Mellanox Technologies
- Microsemi Corporation
- Microwave Networks
- MIMOtech
- Mitsubishi Electric Corporation
- Mobiveil
- Molex
- Moseley Associates
- MRV Communications
- MTI (Microelectronics Technology, Inc.)
- N.A.T.
- Nash Technologies
- NEC Corporation
- Netonomics
- NETSCOUT Systems
- New Postcom Equipment
- Nexcomm Systems
- NexxCom Wireless
- NGMN (Next Generation Mobile Networks) Alliance
- Node-H
- Nokia
- Nokia Networks
- Nokia Technologies
- NTT DoCoMo
- NuRAN Wireless
- Nutaq Innovation
- NXP Semiconductors
- Octasic
- OE Solutions
- Omnitron Systems
- ON.Lab (Open Networking Lab)
- OneAccess Networks
- ONF (Open Networking Foundation)
- Orange
- OSA (OpenAirInterface Software Alliance)
- Parallel Wireless
- Peraso Technologies
- Phluido
- PMN (Private Mobile Networks)
- Polewall
- Potevio
- Proxim Wireless Corporation
- Qualcomm
- Qucell
- Qwilt
- RACOM
- RAD Data Communications
- Radisys Corporation
- RADWIN
- Raisecom
- Range Networks
- Red Hat
- Redline Communications
- REMEC Broadband Wireless Networks
- Saguna Networks
- SAI Technology
- Samji Electronics
- Samsung Electronics
- Sarokal Test Systems
- SCF (Small Cell Forum)
- SerComm Corporation
- SIAE Microelectronica
- Siklu Communication
- Sistelbanda
- SITRONICS
- SK Telecom
- SK Telesys
- SkyFiber
- SoftBank Group
- Solectek Corporation
- SOLiD
- Sooktha
- Source Photonics
- Spectronite
- SpiderCloud Wireless
- Sprint Corporation
- SRS (Software Radio Systems)
- Star Solutions
- Sumitomo Electric Industries
- Sunwave Solutions
- Tarana Wireless
- Tata Elxsi
- TEKTELIC Communications
- Telco Systems
- Telecom Italia Group
- Telefónica Group
- Telenor Group
- Tellabs
- Tellion
- Telrad Networks
- Telus Corporation
- TI (Texas Instruments)
- TIM (Telecom Italia Mobile)
- Trango Systems
- Transition Networks
- TSDSI (Telecommunications Standards Development Society, India)
- TTA (Telecommunications Technology Association, South Korea)
- TTC (Telecommunication Technology Committee, Japan)
- Ubiquoss
- UTStarcom
- Vanu
- Verizon Communications
- Viavi Solutions
- VMware
- Vodafone Group
- Vubiq Networks
- Wave1
- WiPro
- Xelic
- Xilinx
- xRAN Consortium
- Zain Group
- ZTE

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=1237586

Thursday, 28 June 2018

Market Insights: The Wireless Network Infrastructure Ecosystem: 2017 - 2030 - Macrocell RAN, Small Cells, C-RAN, RRH, DAS, Carrier Wi-Fi, Mobile Core, Backhaul & Fronthaul

Researchmoz added Most up-to-date research on "The Wireless Network Infrastructure Ecosystem: 2017 - 2030 - Macrocell RAN, Small Cells, C-RAN, RRH, DAS, Carrier Wi-Fi, Mobile Core, Backhaul & Fronthaul" to its huge collection of research reports.

The term “Wireless Network Infrastructure” has conventionally been associated with macrocell RAN (Radio Access Network) and mobile core segments of mobile operator networks. However, the scope of the term is expanding as mobile operators increase their investments in Heterogeneous Network or HetNet infrastructure such as small cells, carrier Wi-Fi and DAS (Distributed Antenna Systems), to cope with increasing capacity and coverage requirements.

In addition, mobile operators are keen to shift towards a C-RAN (Centralized RAN) architecture, which centralizes baseband functionality to be shared across a large number of distributed radio nodes. In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as resource pooling, multi-cell coordination, network extensibility and energy efficiency.

Get PDF for More Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=1480947

Despite a rapid and persistent decline in standalone macrocell RAN infrastructure spending, SNS Research estimates that the wireless network infrastructure market will grow at a CAGR of 2% between 2017 and 2020. Driven by investments in HetNet infrastructure and 5G NR (New Radio) rollouts – beginning in 2019, the market is expected to be worth $56 Billion in annual spending by 2020, up from $53 Billion in 2017.

The “Wireless Network Infrastructure Ecosystem: 2017 – 2030 – Macrocell RAN, Small Cells, C-RAN, RRH, DAS, Carrier Wi-Fi, Mobile Core, Backhaul & Fronthaul” report presents an in-depth assessment of the wireless network infrastructure ecosystem including enabling technologies, key trends, market drivers, challenges, investment trends, mobile operator revenue potential, regional CapEx commitments, network rollout strategies, future roadmap, value chain, ecosystem player profiles and vendor market share. The report also presents forecasts for wireless network infrastructure investments from 2017 till 2030. The forecasts cover 11 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

The report covers the following topics:

- Up-to-date coverage of market dynamics allowing wireless network infrastructure vendors to analyze opportunities and challenges of selling to mobile operators in different regional markets
- Analysis of demand and supply of wireless network infrastructure including forecasts of investment trends, technology requirements and deployment strategies for antenna, RAN, mobile core, backhaul and fronthaul deployments
- Review of mobile operator CapEx commitments, subscriptions, traffic projections and service revenue, by technology and region
- Market outlook for key technologies including LTE-Advanced Pro, VoLTE, LTE Broadcast, Cloud RAN, unlicensed and shared access small cells, and 5G NR
- Industry roadmap and value chain
- Profiles and strategies of over 550 ecosystem players including wireless network infrastructure vendors and enabling technology providers
- Vendor market share for macrocell RAN, small cells, C-RAN, DAS, carrier Wi-Fi, mobile core, backhaul and fronthaul
- Market analysis and forecasts from 2017 till 2030

Forecast Segmentation

Market forecasts are provided for each of the following submarkets and their subcategories:

Standalone Macrocell RAN

Air Interface Technology Segmentation

- 2G & 3G
- LTE FDD
- TD-LTE
- WiMAX
- 5G NR (New Radio)

Mobile Core

Technology Segmentation

- 3G Packet Core
- HLR (Home Location Register)
- MSS (Mobile Switching Subsystem)
- LTE EPC (Evolved Packet Core)
- WiMAX Mobile Core
- 5G NextGen Core

Macrocell Backhaul

Technology Segmentation

- Ethernet
- Microwave & Millimeter Wave
- Satellite
- WDM (Wavelength Division Multiplexing)
- PON (Passive Optical Network)
- Others

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-wireless-network-infrastructure-ecosystem-2017-2030-macrocell-ran-small-cells-cran-rrh-das-carrier-wifi-mobile-core-backhaul-fronthaul-report.html/toc

Small Cells

Air Interface Technology Segmentation

- 2G & 3G
- LTE
- 5G NR

Deployment Model Segmentation

- Indoor
- Outdoor

RAN Architecture Segmentation

- Standalone
- C-RAN

Use Case Segmentation

- Residential
- Enterprise
- Urban
- Rural & Suburban

Cell Size Segmentation

- Femtocells
- Picocells
- Microcells

Small Cell Backhaul

Technology Segmentation

- DSL
- Ethernet
- Microwave
- Millimeter Wave
- Satellite
- Fiber & Others

Carrier Wi-Fi

Submarket Segmentation

- Access Points
- Access Point Controllers

Integration Approach Segmentation

- Standalone Wi-Fi Hotspots
- Managed Wi-Fi Offload

C-RAN

Air Interface Technology Segmentation

- 3G & LTE
- 5G NR

Deployment Model Segmentation

- Indoor
- Outdoor

Cell Size Segmentation

- Small Cells
- Macrocells

Submarket Segmentation

- BBUs (Baseband Units)
- RRHs (Remote Radio Heads)

C-RAN Fronthaul

Technology Segmentation

- Dedicated Fiber
- WDM (Wavelength Division Multiplexing)
- OTN (Optical Transport Network)
- PON (Passive Optical Network)
- Ethernet
- Microwave
- Millimeter Wave
- G.Fast & Others

DAS

Deployment Model Segmentation

- Indoor
- Outdoor

Regional Markets

- Asia Pacific
- Eastern Europe
- Latin & Central America
- Middle East & Africa
- North America
- Western Europe

The report provides answers to the following key questions:

- How big is the 2G, 3G, 4G and 5G wireless network infrastructure opportunity?
- What trends, challenges and barriers are influencing its growth?
- How is the ecosystem evolving by segment and region?
- Which submarkets will see the highest percentage of growth?
- What will the market size be in 2020 and at what rate will it grow?
- How will the market shape for small cell, C-RAN, carrier Wi-Fi and DAS deployments?
- How much service revenue will be generated by mobile operator networks?
- When will 2G and 3G infrastructure spending diminish?
- What is the outlook for LTE and 5G infrastructure investments?
- What are the future prospects of millimeter wave technology for backhaul, fronthaul and RAN deployments?
- Who are the key vendors in the market, what is their market share and what are their strategies?
- What strategies should wireless network infrastructure vendors and mobile operators adopt to remain competitive?

The report has the following key findings:

- Despite a rapid and persistent decline in standalone macrocell RAN infrastructure spending, SNS Research estimates that the wireless network infrastructure market will grow at a CAGR of 2% between 2017 and 2020.
- Driven by investments in HetNet infrastructure and 5G NR rollouts – beginning in 2019, the market is expected to be worth $56 Billion in annual spending by 2020, up from $53 Billion in 2017.
- By the end of 2020, C-RAN, small cells, DAS and carrier Wi-Fi, together with their fronthaul and backhaul segments, will account for more than 45% of all wireless network infrastructure spending.
- With LTE availability increasing worldwide and ongoing upgrades to deliver multi-hundred Megabit and Gigabit-grade services, we estimate that LTE, LTE-Advanced and LTE-Advanced Pro networks will generate more than $950 Billion in annual service revenue by 2020.
- New market players are beginning to emerge as mobile operators accelerate their transition to virtualized network infrastructure. For example, Mavenir Systems' merger with C-RAN specialist Ranzure Networks and its subsequent acquisition of Brocade's virtualized mobile core business, has positioned the company as an end-to-end provider of 5G-ready mobile network solutions.

Browse Detail Report @ https://www.researchmoz.us/the-wireless-network-infrastructure-ecosystem-2017-2030-macrocell-ran-small-cells-cran-rrh-das-carrier-wifi-mobile-core-backhaul-fronthaul-report.html

List of Companies Mentioned

- 3GPP (Third Generation Partnership Project)
- 3Roam
- 4ipnet
- 4RF
- 6Harmonics
- 6WIND
- AAS (Amphenol Antenna Solutions)
- ABB
- Accedian Networks
- Accelink Technologies Corporation
- Accelleran
- Accuris Networks
- Accuver
- Ace Technologies Corporation
- AceAxis
- ACOME
- Actelis Networks
- Actiontec Electronics
- Actus Networks
- Adax
- ADB
- ADI (Analog Devices Inc.)
- ADLINK Technology
- ADRF (Advanced RF Technologies)
- ADTRAN
- ADVA Optical Networking
- Advantech
- Advantech Wireless
- Aerohive Networks
- Affarii Technologies
- Affirmed Networks
- Airgain
- AirHop Communications
- Air-Lynx
- Airrays
- Airspan Networks
- AKM (Asahi Kasei Microdevices Corporation)
- Akoustis Technologies
- ALAXALA Networks Corporation
- ALBEDO Telecom
- Albis-Elcon
- ALCOMA
- Alepo
- Allied Data Technologies
- Allied Telesis
- Allot Communications
- Alpha Networks
- Alpha Technologies
- Alpha Wireless
- Alphabet
- Altai Technologies
- Altiostar Networks
- Altran
- Alvarion Technologies
- Amarisoft
- Amdocs
- América Móvil Group
- American Tower Corporation
- Anertai Communications
- Anokiwave
- Anritsu Corporation
- APRESIA Systems
- Aptilo Networks
- Aquantia Corporation
- Arcadyan Technology Corporation
- Argela
- Aricent
- ARM Holdings
- Arqiva
- ARRIS International
- Artemis Networks
- Artesyn Embedded Technologies
- Artiza Networks
- Aruba Networks
- Aselan
- Askey Computer Corporation
- ASOCS
- Astellia
- ASTRI (Hong Kong Applied Science and Technology Research Institute)
- AT&T
- ATDI
- Athonet
- AttoCore
- Autelan
- Avanti Communications Group
- Aviat Networks
- AVM (AVM Computersysteme Vertriebs)
- Azcom Technology
- Baicells Technologies
- BandwidthX
- BATS (Broadband Antenna Tracking Systems)
- Benetel
- Bharti Airtel Group
- Bird Technologies
- Black Box Corporation
- Blu Wireless Technology
- Blue Danube Systems
- BlueWaveTel
- BluWan
- Boomsense/Bangxun Technology
- BoostEdge
- BridgeWave Communications
- Broadcom
- Brocade Communications Systems
- Browan Communications
- BSG Wireless
- BTI Wireless
- C Squared Systems
- CableFree (Wireless Excellence)
- Cadence Design Systems
- Calix
- Cambium Networks
- Cambridge Consultants
- Canoga Perkins Corporation
- Carlson Wireless Technologies
- Carnegie Technologies
- CarrierComm
- Casa Systems
- Cavium
- CBNL (Cambridge Broadband Networks Ltd.)
- CCI (Communication Components, Inc.)
- CCI Systems
- CCN (Cirrus Core Networks)
- CCS (Cambridge Communication Systems)
- CeedTec
- Cellcomm Solutions
- CellMax Technologies
- CellMining
- Cellnex Telecom
- Cellwize Wireless Technologies
- cellXica
- CelPlan Technologies
- Celtro
- Ceragon Networks
- CEVA
- China Mobile
- China Telecom
- China Unicom
- Cielo Networks
- Ciena Corporation
- Cirpack
- Cisco Systems
- Clavister
- Cloudstreet
- CND (Core Network Dynamics)
- Cobham Wireless
- Cohere Technologies
- Coherent Logix
- Collinear Networks
- Collision Communications
- Comba Telecom
- Comcores
- CommAgility
- CommScope
- Comtech EF Data Corporation
- Comtech Korea
- Comtrend Corporation
- Connect Tech
- Contela
- Corecess
- Coriant
- Corning
- Creanord
- Crown Castle International Corporation
- CS Corporation
- D2 Technologies
- Dali Wireless
- DASAN Zhone Solutions
- Datang Mobile
- Dell Technologies
- Delta Electronics
- DENGYO (Nihon Dengyo Kosaku)
- Dialogic
- DigitalGlobe
- Direct Beam
- D-Link Corporation
- DragonWave-X
- Druid Software
- DT (Deutsche Telekom)
- DYNE TECH
- Eahison Communication
- eASIC Corporation
- E-Band Communications
- EBlink
- ECI Telecom
- Edgewater Wireless Systems
- EDX Wireless
- EION Wireless
- Ekinops
- ELUON Corporation
- ELVA-1
- ENENSYS Technologies
- Eoptolink Technology
- Ercom
- Ericsson
- Ethernity Networks
- Ethertronics
- ETRI (Electronics & Telecommunications Research Institute, South Korea)
- ETSI (European Telecommunications Standards Institute)
- Eutelsat  Communications
- Exalt Wireless
- EXFO
- Expeto Wireless
- Expway
- ExteNet Systems
- Extreme Networks
- Facebook
- Fairwaves
- Faraday Technology Corporation
- FastBack Networks
- Federated Wireless
- FiberHome Technologies
- FibroLan
- Filtronic
- Finisar Corporation
- Firetide
- Flash Networks
- Flex Logix Technologies
- Forsk
- Fortinet
- Foshan Anderson Communication Equipment
- Foxcom
- Foxconn Interconnect Technology
- Fraunhofer FOKUS  (Institute for Open Communication Systems)
- Fraunhofer HHI (Heinrich Hertz Institute)
- Frog Cellsat
- FRTek
- Fujian Helios Technologies
- Fujian Sunnada Network Technology
- Fujitsu
- Furukawa Electric Group
- Furuno Electric
- Galgus
- Galtronics Corporation
- Gamma Nu
- Gemtek Technology
- GENBAND
- General Dynamics Mission Systems
- Genmix Technology
- GenXComm
- GigaLight
- GIKO GROUP
- Gilat Satellite Networks
- GlobalFoundries
- Globalstar
- GoNet Systems
- Goodman Networks
- Google
- GRENTECH
- Guangzhou Iplook Technologies
- GWT (Global Wireless Technologies)
- Handlink Technologies
- Hansen Technology
- Harris Corporation
- HCL Technologies
- Hefei Maniron Electronic and Technology
- HFR
- Hilinks Technology
- Hisense
- HISPASAT Group
- Hitachi
- HPE (Hewlett Packard Enterprise)
- Huahuan
- Huawei
- HUBER+SUHNER
- Hughes Network Systems
- HXI
- IBM Corporation
- iBwave Solutions
- IDT (Integrated Device Technology)
- IDY Corporation
- IM Technology
- Imec International
- Impower Technology
- InCoax
- Infineon Technologies
- Infinera
- InfiNet Wireless
- InfoVista
- Inmarsat
- Innertron
- InnoLight Technology
- InnoWireless
- Intel Corporation
- Intelsat
- InterDigital
- Intracom Telecom
- IP Light
- ip.access
- IPITEK
- iPosi
- ISCO International
- Iskratel
- IS-Wireless
- Italtel
- ITRI (Industrial Technology Research Institute, Taiwan)
- ITU (International Telecommunication Union)
- Jiangsu Hengxin Technology
- Jiangsu Zhengkai Electronics Technology
- JMA Wireless
- JQL Electronics
- JRC (Japan Radio Company)
- Juni Global
- Juniper Networks
- Kaelus
- Kathrein-Werke KG
- KDDI
- Keima
- KEYMILE
- Keysight Technologies
- Kisan Telecom
- Kleos
- KMW
- Koonsys Radiocommunications
- Kumu Networks
- Kyrio
- Lattice Semiconductor
- LCR Embedded Systems
- Lemko Corporation
- LG Uplus
- LGS Innovations
- Ligado Networks
- LightPointe Communications
- LigoWave
- Lime Microsystems
- Lindsay Broadband
- Linker Networks
- Linksys
- Loea Corporation
- LS telcom
- Lumentum
- Luminate Wireless
- LuxCarta
- MACOM Technology Solutions Holdings
- Maja Systems
- Mathworks
- Maven Wireless
- Mavenir Systems
- MAX4G
- Maxim Integrated
- MaxLinear
- Mellanox Technologies
- MER Group
- Metaswitch Networks
- Microlab
- Microsemi Corporation
- Microwave Networks
- Mimosa Networks
- MIMOtech
- MitraStar Technology Corporation
- Mitsubishi Electric Corporation
- Mobiveil
- Mojo Networks
- Molex
- Mosaik
- Moseley Associates
- MP Antenna
- MRV Communications
- MTI (Microelectronics Technology, Inc.)
- MTI Wireless Edge
- Multiwave Sensors
- N.A.T.
- Nash Technologies
- NBN Co
- NEC Corporation
- Netas
- NETGEAR
- Netonomics
- NETSCOUT Systems
- New Postcom Equipment
- NewNet Mobile Communications
- Nexcomm Systems
- Nextivity
- NexxCom Wireless
- NI (National Instruments)
- Node-H
- Nokia Networks
- Nomadix
- Nomor Research
- NTT DoCoMo
- NuRAN Wireless
- NXP Semiconductors
- Oceus Networks
- Octasic
- OE Solutions
- OFS
- Omnitron Systems
- Omoco
- One2many
- OneAccess Networks
- OneWeb
- OpenCell
- Openet
- Optulink
- Oracle Communications
- Oracle Corporation
- Orange
- OZC (Optical Zonu Corporation)
- P.I. Works
- Panasonic Corporation
- Panda Electronics Group
- Panorama Antennas
- Parallel Wireless
- Patton Electronics
- PCTEL
- Peraso Technologies
- PHAZR
- Phluido
- Plasma Antennas
- Pletronics
- PMN (Private Mobile Networks)
- Polaris Networks
- Polewall
- Polystar
- Positron
- Potevio
- PRISMA Telecom Testing
- Procera Networks
- Proxim Wireless Corporation
- Pulse Electronics
- pureLiFi
- Qorvo
- Qualcomm
- Quanta Computer
- Qucell
- Quintel
- Qulsar
- Quortus
- Qwilt
- RACOM
- RAD Data Communications
- RADCOM
- Radio Gigabit
- Radisys Corporation
- RADWIN
- Raisecom
- Rakon
- Range Networks
- Ranplan Wireless Network Design
- Raycap
- Red Hat
- RED Technologies
- Redline Communications
- REMEC Broadband Wireless Networks
- RF DSP
- RF MORECOM KOREA
- RF Window
- RFS (Radio Frequency Systems)
- Rivada Networks
- Rohde & Schwarz
- Rosenberger
- R-TRON
- Ruckus Wireless
- SAF Tehnika
- Sagemcom
- Saguna Networks
- SAI Technology
- Samji Electronics
- Samsung Electronics
- Sarokal Test Systems
- SAT (Smart Antenna Technologies)
- Senao Networks
- Seontech
- SerComm Corporation
- SES
- Sevis Systems
- SevOne
- Shared Access
- Shenzhen Huaptec
- Shyam Networks
- Shyam Telecom
- SIAE Microelettronica
- Siklu Communication
- Silicon Labs (Silicon Laboratories)
- Singtel
- SIRADEL
- SiRRAN Communications
- Sistelbanda
- SITRONICS
- Sivers IMA
- SK Telecom
- SK Telesys
- Skybird Electronic Science & Technology
- SkyFiber
- Skyworks Solutions
- SmartSky Networks
- SMC Networks
- Smith Micro Software
- SoftBank Corporation
- Softil
- Solectek Corporation
- SOLiD
- Sonus Networks
- Sooktha
- Source Photonics
- Space Data Corporation
- Spark New Zealand
- Spectronite
- SpiderCloud Wireless
- Spirent Communications
- Sprint Corporation
- SRS (Software Radio Systems)
- Star Microwave
- Star Solutions
- Starry
- STMicroelectronics
- Straight Path Communications
- Sumitomo Electric Industries
- Sunwave Solutions
- Suzhou Hexagon Communication Technologies
- Syniverse Technologies
- Tarana Wireless
- Tata Elxsi
- Tech Mahindra
- Technicolor
- Tecom
- Tecore Networks
- TEKTELIC Communications
- Telco Systems
- Telefónica Group
- Telenor Group
- Telkomsel
- Tellabs
- Tellion
- Tellumat
- Telnet Redes Inteligentes
- Telrad Networks
- Telsey
- Telstra
- Telum
- TEOCO Corporation
- TESSCO Technologies
- Thuraya Telecommunications Company
- TI (Texas Instruments)
- Tieto Corporation
- Tilgin
- TIM (Telecom Italia Mobile)
- T-Mobile USA
- TP-LINK Technologies
- Trango Systems
- Transition Networks
- Tranzeo Wireless Technologies
- Trópico
- TruConnect Technologies
- TSMC (Taiwan Semiconductor Manufacturing Company)
- TTP (The Technology Partnership)
- Tulinx
- Ubiquiti Networks
- Ubiquoss
- U-blox
- UTStarcom
- Vanu
- Vasona Networks
- Vectron International
- Vencore Labs
- VEON
- Verizon Communications
- Vertical Bridge
- ViaSat
- Viavi Solutions
- Virtuosys
- VMware
- VNC (Virtual Network Communications)
- VNL (Vihaan Networks Limited)
- Vodafone Group
- VT iDirect
- Vubiq Networks
- Wave1
- Wavesight
- Westell Technologies
- Wevercomm
- Wilson Electronics
- WiPro
- Wireless Telecom Group
- WiSig Networks
- WNC (Wistron NeWeb Corporation)
- WTL (World Telecom Labs)
- Wuhan Fingu Electronic Technology
- Wuhan Gewei Electronic Technologies
- Wytec International
- XAVi Technologies Corporation
- XCellAir
- Xelic
- xG Technology
- Xilinx
- Yamaha Corporation
- Z-Com
- Zinwave
- ZTE
- Zyxel Communications Corporation

Countires Covered

- Afghanistan
- Albania
- Algeria
- Andorra
- Angola
- Anguilla
- Antigua & Barbuda
- Argentina
- Armenia
- Aruba
- Australia
- Austria
- Azerbaijan
- Bahamas
- Bahrain
- Bangladesh
- Barbados
- Belarus
- Belgium
- Belize
- Benin
- Bermuda
- Bhutan
- Bolivia
- Bosnia Herzegovina
- Botswana
- Brazil
- British Virgin Islands
- Brunei
- Bulgaria
- Burkina Faso
- Burundi
- Cambodia
- Cameroon
- Canada
- Cape Verde
- Cayman Islands
- Central African Republic
- Chad
- Chile
- China
- Cocos Islands
- Colombia
- Comoros Islands
- Congo
- Cook Islands
- Costa Rica
- Côte d'Ivoire
- Croatia
- Cuba
- Cyprus
- Czech Republic
- Democratic Rep of Congo (ex-Zaire)
- Denmark
- Djibouti
- Dominica
- Dominican Republic
- East Timor
- Ecuador
- Egypt
- El Salvador
- Equatorial Guinea
- Eritrea
- Estonia
- Ethiopia
- Faroe Islands
- Federated States of Micronesia
- Fiji
- Finland
- France
- French Guiana
- French Polynesia (ex-Tahiti)
- French West Indies
- Gabon
- Gambia
- Georgia
- Germany
- Ghana
- Gibraltar
- Greece
- Greenland
- Grenada
- Guam
- Guatemala
- Guernsey
- Guinea Republic
- Guinea-Bissau
- Guyana
- Haiti
- Honduras
- Hong Kong
- Hungary
- Iceland
- India
- Indonesia
- Iran
- Iraq
- Ireland
- Isle of Man
- Israel
- Italy
- Jamaica
- Japan
- Jersey
- Jordan
- Kazakhstan
- Kenya
- Kirghizstan
- Kiribati
- Korea
- Kosovo
- Kuwait
- Laos
- Latvia
- Lebanon
- Lesotho
- Liberia
- Libya
- Liechtenstein
- Lithuania
- Luxembourg
- Macau
- Macedonia
- Madagascar
- Malawi
- Malaysia
- Maldives
- Mali
- Malta
- Marshall Islands
- Mauritania
- Mauritius
- Mayotte
- Mexico
- Moldova
- Monaco
- Mongolia
- Montenegro
- Montserrat
- Morocco
- Mozambique
- Myanmar
- Namibia
- Nepal
- Netherlands
- Netherlands Antilles
- New Caledonia
- New Zealand
- Nicaragua
- Niger
- Nigeria
- Niue
- North Korea
- Northern Marianas
- Norway
- Oman
- Pakistan
- Palau
- Palestine
- Panama
- Papua New Guinea
- Paraguay
- Peru
- Philippines
- Poland
- Portugal
- Puerto Rico
- Qatar
- Réunion
- Romania
- Russia
- Rwanda
- Samoa
- Samoa (American)
- Sao Tomé & Principe
- Saudi Arabia
- Senegal
- Serbia
- Seychelles
- Sierra Leone
- Singapore
- Slovak Republic
- Slovenia
- Solomon Islands
- Somalia
- South Africa
- Spain
- Sri Lanka
- St Kitts & Nevis
- St Lucia
- St Vincent & The Grenadines
- Sudan
- Suriname
- Swaziland
- Sweden
- Switzerland
- Syria
- Tajikistan
- Taiwan
- Tanzania
- Thailand
- Togo
- Tonga
- Trinidad & Tobago
- Tunisia
- Turkey
- Turkmenistan
- Turks & Caicos Islands
- UAE
- Uganda
- UK
- Ukraine
- Uruguay
- US Virgin Islands
- USA
- Uzbekistan
- Vanuatu
- Venezuela
- Vietnam
- Yemen
- Zambia
- Zimbabwe

Tuesday, 10 April 2018

The Wireless Network Infrastructure Ecosystem: 2016 - 2030 - Macrocell RAN, Small Cells, C-RAN, RRH, DAS, Carrier Wi-Fi, Mobile Core, Backhaul & Fronthaul - Researchmoz

Researchmoz added Most up-to-date research on "The Wireless Network Infrastructure Ecosystem: 2016 - 2030 - Macrocell RAN, Small Cells, C-RAN, RRH, DAS, Carrier Wi-Fi, Mobile Core, Backhaul & Fronthaul" to its huge collection of research reports.

The term “Wireless Network Infrastructure” has conventionally been associated with macrocell RAN (Radio Access Network) and mobile core segments of mobile operator networks. However, the scope of the term is expanding as mobile operators increase their investments in Heterogeneous Network or HetNet infrastructure such as small cells, carrier Wi-Fi and DAS (Distributed Antenna Systems), to cope with increasing capacity and coverage requirements.

In addition, mobile operators are keen to shift towards a C-RAN (Centralized RAN) architecture, which centralizes baseband functionality to be shared across a large number of distributed radio nodes. In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as baseband pooling, enhanced coordination between cells, virtualization, network extensibility and energy efficiency.

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=804839

Due to a decline in macrocell RAN infrastructure spending, SNS Research estimates that the wireless network infrastructure market will remain relatively flat through 2020, with annual investments of over $61 Billion. We also expect a significant shift in investments towards small cells, C-RAN, DAS and carrier Wi-Fi infrastructure. By 2020, these four submarkets, together with their fronthaul and backhaul segments, will account for over 50% of all wireless network infrastructure spending.

The “Wireless Network Infrastructure Ecosystem: 2016 – 2030 – Macrocell RAN, Small Cells, C-RAN, RRH, DAS, Carrier Wi-Fi, Mobile Core, Backhaul & Fronthaul” report presents an in-depth assessment of the wireless network infrastructure ecosystem including enabling technologies, key trends, market drivers, challenges, investment trends, mobile operator revenue potential, regional CapEx commitments, network rollout strategies, future roadmap, value chain, ecosystem player profiles and vendor market share. The report also presents forecasts for wireless network infrastructure investments from 2016 till 2030. The forecasts cover 9 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

The report covers the following topics:

- Up-to-date coverage of market dynamics allowing wireless network infrastructure vendors to analyze opportunities and challenges of selling to mobile operators in different regional markets
- Analysis of demand and supply of wireless network infrastructure including forecasts of investment trends, technology requirements and deployment strategies for antenna, RAN, mobile core, backhaul and fronthaul deployments
- Review of mobile operator CapEx commitments, subscriptions, traffic projections and service revenue, by technology and region
- Market outlook for key technologies including TD-LTE, LTE-Advanced, VoLTE, RCS, LTE broadcast, unlicensed LTE small cells and 5G
- Industry roadmap and value chain
- Profiles and strategies of over 350 ecosystem players including wireless network infrastructure vendors and enabling technology providers
- Vendor market share for macrocell RAN, small cells, C-RAN, DAS, carrier Wi-Fi, mobile core, backhaul and fronthaul
- Market analysis and forecasts from 2016 till 2030

Forecast Segmentation

Market forecasts are provided for each of the following submarkets and their subcategories:

Macrocell RAN

Air Interface Technology Segmentation

- 2G & 3G
- LTE FDD
- TD-LTE
- WiMAX

Mobile Core

Technology Segmentation

- 3G Packet Core
- HLR (Home Location Register)
- MSS (Mobile Switching Subsystem)
- LTE EPC (Evolved Packet Core)
- WiMAX Mobile Core
- 5G Mobile Core

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-wireless-network-infrastructure-ecosystem-2016-2030-macrocell-ran-small-cells-cran-rrh-das-carrier-wifi-mobile-core-backhaul-fronthaul-report.html/toc

Macrocell Backhaul

Technology Segmentation

- Ethernet
- Microwave & Millimeter Wave
- Satellite
- WDM (Wavelength Division Multiplexing)
- PON (Passive Optical Network)
- Others

Small Cells

Air Interface Technology Segmentation

- 2G & 3G
- LTE
- 5G

Deployment Model Segmentation

- Indoor
- Outdoor

Use Case Segmentation

- Residential
- Enterprise
- Urban
- Rural & Suburban

Cell Size Segmentation

- Femtocells
- Picocells
- Microcells

Small Cell Backhaul

Technology Segmentation

- DSL
- Ethernet
- Microwave
- Millimeter Wave
- Satellite
- Fiber & Others

Carrier Wi-Fi

Sub market Segmentation

- Access Points
- Access Point Controllers

Integration Approach Segmentation

- Standalone Wi-Fi Hotspots
- Managed Wi-Fi Offload

C-RAN

Air Interface Technology Segmentation

- 3G & LTE
- 5G

Deployment Model Segmentation

- Indoor
- Outdoor

Sub market Segmentation

- BBUs (Baseband Units)
- RRHs (Remote Radio Heads)

C-RAN Fronthaul

Technology Segmentation

- Dedicated Fiber
- WDM
- OTN (Optical Transport Network)
- PON
- Ethernet
- Microwave
- Millimeter Wave

DAS

Deployment Model Segmentation

- Indoor
- Outdoor

Regional Markets

- Asia Pacific
- Eastern Europe
- Latin & Central America
- Middle East & Africa
- North America
- Western Europe

Key Questions Answered

The report provides answers to the following key questions:

- How big is the 2G, 3G, 4G and 5G wireless network infrastructure opportunity?
- What trends, challenges and barriers are influencing its growth?
- How is the ecosystem evolving by segment and region?
- Which submarkets will see the highest percentage of growth?
- What will the market size be in 2020 and at what rate will it grow?
- How will the market shape for small cell, C-RAN, carrier Wi-Fi and DAS deployments?
- How much service revenue will be generated by mobile operator networks?
- When will 2G and 3G infrastructure spending diminish?
- What is the outlook for LTE and 5G infrastructure investments?
- What are the future prospects of millimeter wave technology for backhaul, fronthaul and RAN deployments?
- Who are the key vendors in the market, what is their market share and what are their strategies?
- What strategies should wireless network infrastructure vendors and mobile operators adopt to remain competitive?

Make an Enquiry of this report @ https://www.researchmoz.us/enquiry.php?type=E&repid=804839

Key Findings

The report has the following key findings:

- Due to a decline in macrocell RAN infrastructure spending, SNS Research estimates that the wireless network infrastructure market will remain relatively flat through 2020, with annual investments of over $61 Billion.
- SNS Research expects a significant shift in investments towards small cells, C-RAN, DAS and carrier Wi-Fi infrastructure. By 2020, these four submarkets, together with their fronthaul and backhaul segments, will account for over 50% of all wireless network infrastructure spending.
- Small cell and C-RAN solutions are beginning to converge as small cell OEMs seek to capitalize on the benefits of centralized coordination for in-building and enterprise coverage.
- Driven by ongoing large scale deployments, we estimate that LTE networks will generate nearly $800 Billion in annual service revenue by 2020.
- Vendors are increasing their focus on profit margins. Many are already cutting staff, embracing operational excellence, evolving their new business models, acquiring niche businesses and expanding their managed services offerings.
- New CapEx commitment avenues such as HetNet infrastructure and virtualization will continue to usher industry restructuring, and market consolidation.

Wednesday, 4 April 2018

Overview Of The C-RAN (Centralized Radio Access Network) Ecosystem: 2017 – 2030 : Researchmoz

Researchmoz added Most up-to-date research on " The C-RAN (Centralized Radio Access Network) Ecosystem: 2017 - 2030 - Opportunities, Challenges, Strategies & Forecasts" to its huge collection of research reports.

Centralized RAN or C-RAN is an architectural shift in RAN (Radio Access Network) design, where the bulk of baseband processing is centralized and aggregated for a large number of distributed radio nodes. In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as baseband pooling, enhanced coordination between cells, virtualization, network extensibility, smaller deployment footprint and reduced power consumption.

Initially popularized by Japanese and South Korean mobile operators, C-RAN technology is beginning to gain momentum worldwide with major tier 1 operators – including Verizon Communications, AT&T, Sprint, China Mobile, Vodafone, TIM (Telecom Italia Mobile), Orange and Telefónica –  seeking to leverage the benefits of centralized baseband processing.

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=1237586

SNS Research estimates that global investments in C-RAN architecture networks will reach nearly $9 Billion by the end of 2017. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020. These investments will include spending on RRHs (Remote Radio Heads), BBUs (Baseband Units) and fronthaul transport network equipment.

The “C-RAN (Centralized Radio Access Network) Ecosystem: 2017 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the C-RAN ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models, operator case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for C-RAN infrastructure investments from 2017 till 2030. The forecasts cover 3 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

Key Findings:

The report has the following key findings:

- Expected to reach nearly $9 Billion in global spending by the end of 2017, C-RAN is increasingly becoming the preferred approach to deploy future mobile networks. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020.
- Small cells are also beginning to be deployed in a C-RAN architecture to leverage the benefits of resource pooling and multi-cell coordination. This trend is particularly prevalent in the indoor and enterprise segments, with a number of dedicated vendor solutions such as CommScope's OneCell, SpiderCloud's E-RAN, Ericsson's Radio Dot, and Huawei's LampSite.
- Mobile operators are exploring multiple baseband functional split options for C-RAN implementation, as they seek to ease the transition to 5G networks while reducing fronthaul costs.
- By the end of 2020, SNS Research estimates that vRAN/Cloud RAN deployments with virtualized baseband processing will account for nearly 20% of all C-RAN investments.
- The vendor arena is continuing to consolidate with several prominent M&A deals such as Mavenir Systems' recent merger with C-RAN specialist Ranzure Networks, which has positioned the company as an end-to-end provider of 5G-ready mobile network solutions.

Topics Covered:

The report covers the following topics:

- C-RAN ecosystem
- Market drivers and barriers
- Key architectural components (RRH, BBU and fronthaul)
- Competing RAN architectures including traditional macrocell base stations, standalone small cells and DAS (Distributed Antenna Systems)
- Key trends including baseband functional splitting, enterprise RAN, vRAN (Virtualized RAN)/Cloud RAN, MEC (Mobile Edge Computing) and RANaaS (RAN-as-a-Service)
- Fronthaul networking technologies and interface options
- C-RAN deployment models and mobile operator case studies
- Regulatory landscape and standardization
- Industry roadmap and value chain
- Profiles and strategies of over 230 leading ecosystem players including enabling technology providers, radio equipment suppliers, BBU vendors, fronthaul network equipment vendors and mobile operators
- Strategic recommendations for ecosystem players including C-RAN solution providers and mobile operators
- Market analysis and forecasts from 2017 till 2030

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2017-2030-opportunities-challenges-strategies-forecasts-report.html/toc

Forecast Segmentation:

Market forecasts are provided for each of the following submarkets and their subcategories:

- Submarket Segmentation
- RRHs (Remote Radio Heads)
- BBUs (Baseband Units)
- Fronthaul
- Air Interface Technology Segmentation
- 3G & LTE
- 5G NR (New Radio)
- Network Architecture Segmentation
- Non-Virtualized C-RAN
- vRAN/Cloud RAN
- Deployment Model Segmentation
- Indoor
- Outdoor
- Cell Size Segmentation
- Small Cells
- Macrocells
- Fronthaul Transport Network Technology Segmentation
- Dedicated Fiber
- WDM (Wavelength Division Multiplexing)
- OTN (Optical Transport Network)
- PON (Passive Optical Network)
- Ethernet
- Microwave
- Millimeter Wave
- G.Fast & Others
- Regional Markets
- Asia Pacific
- Eastern Europe
- Middle East & Africa
- Latin & Central America
- North America
- Western Europe

Key Questions Answered:

The report provides answers to the following key questions:

- How big is the C-RAN opportunity?
- What trends, challenges and barriers are influencing its growth?
- How is the ecosystem evolving by segment and region?
- What will the market size be in 2020 and at what rate will it grow?
- Which submarkets will see the highest percentage of growth?
- How can C-RAN facilitate the management of interference and LTE-Advanced features such as CoMP (Coordinated Multi-Point)?
- What are the benefits and drawbacks of each baseband functional split option?
- How can C-RAN reduce the TCO (Total Cost of Ownership) of RAN deployments?
- What are the prospects of wireless fronthaul technologies?
- Is Ethernet a feasible solution for fronthaul networking?
- How big is the market for vRAN/Cloud RAN networks?
- How can mobile operators future-proof their RAN investments for 5G upgrades?
- Who are the key market players and what are their strategies?
- What strategies should C-RAN solution providers and mobile operators adopt to remain competitive?

Make an Enquiry of this report @ https://www.researchmoz.us/enquiry.php?type=E&repid=1237586

List of Companies Mentioned:

The following companies and organizations have been reviewed, discussed or mentioned in the report:

- 3GPP (3rd Generation Partnership Project)
- 3Roam
- 6WIND
- Accelink Technologies Corporation
- Accelleran
- Actelis Networks
- ADLINK Technology
- ADTRAN
- ADVA Optical Networking
- Advantech

Continue...

Monday, 11 September 2017

Global Spending On Virtualized Small Cells Will Surpass $1 Billion Annually By 2020 – Latest Research Report

Researchmoz added Most up-to-date research on "The HetNet Ecosystem (Small Cells, Carrier Wi-Fi, C-RAN & DAS): 2017 - 2030 - Opportunities, Challenges, Strategies & Forecasts" to its huge collection of research reports.

Driven by the growing demand for in-building wireless coverage and the huge influx of mobile data traffic, conventional macrocells alone are no longer deemed sufficient to handle the needs of today's wireless subscribers. In addition, the imminent adoption of centimeter and millimeter wave spectrum, to support higher data rates in 5G networks, necessitates the usage of much smaller cell sizes.


To Get Sample Copy of Report visit @ http://www.researchmoz.us/enquiry.php?type=S&repid=1170820

To cope with growing capacity and coverage requirements, mobile operators are significantly increasing their investments in a variety of Heterogeneous Network or HetNet infrastructure technologies such as strategically deployed small cells, carrier Wi-Fi and DAS (Distributed Antenna System) networks. Adding further to the heterogeneity is the shift towards C-RAN (Centralized RAN) architecture, where centralized baseband functionality is shared across a large number of distributed radio nodes to deliver benefits such as resource pooling, multi-cell coordination, network extensibility and energy efficiency.

SNS Research estimates that global investments on small cells, carrier Wi-Fi, C-RAN and DAS will reach more than $15 Billion by the end of 2017, as mobile operators remain committed to tackle the continued growth of mobile data traffic and evolving coverage requirements. At present, the HetNet market is facing a paradigm shift with multiple advancements ranging from small cell virtualization and neutral hosting to the adoption of unlicensed and shared spectrum. In conjunction with 5G and LTE Advanced network rollouts, these advancements will fuel the market to grow at a CAGR of over 18% between 2017 and 2020.

The “HetNet Ecosystem (Small Cells, Carrier Wi-Fi, C-RAN & DAS): 2017 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the HetNet ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models, use cases, vertical markets, service provider case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for HetNet infrastructure investments from 2017 till 2030. The forecasts cover 6 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

Topics Covered

The report covers the following topics:

- HetNet ecosystem
- Market drivers and barriers
- Enabling technologies and key architectural components for small cells, carrier Wi-Fi, C-RAN and DAS
- Integration, offloading and SON (Self-Organizing Network) technologies
- Key trends including RAN disaggregation; small cell virtualization; unlicensed and shared spectrum usage; and neutral hosting
- Complementary technologies and concepts including millimeter wave radio access; MEC (Mobile Edge Computing); FWA (Fixed Wireless Access); control and user plane separation; and network slicing
- Small cell backhaul and C-RAN fronthaul technologies
- HetNet use cases and deployment models including SCaaS (Small Cells-as-a-Service)
- Enterprise RAN; rural small cells; and tactical small cells for military and public safety applications
- Over 30 case studies of service provider HetNet deployments
- Regulatory landscape and standardization
- Industry roadmap and value chain
- Profiles and strategies of over 500 leading ecosystem players
- Strategic recommendations for HetNet infrastructure vendors and mobile operators
- Market analysis and forecasts from 2017 till 2030

Forecast Segmentation

Market forecasts are provided for each of the following submarkets and their subcategories:
- Small Cells

Air Interface Technology Segmentation

- 2G & 3G
- LTE
- 5G NR (New Radio)

Deployment Model Segmentation

- Indoor
- Outdoor

RAN Architecture Segmentation

- Standalone
- C-RAN

Use Case Segmentation

- Residential
- Enterprise
- Urban
- Rural & Suburban

Cell Size Segmentation

- Femtocells
- Picocells
- Microcells

Small Cell Backhaul

Technology Segmentation

- DSL
- Ethernet
- Microwave
- Millimeter Wave
- Satellite
- Fiber & Others

Carrier Wi-Fi

Submarket Segmentation

- Access Points
- Access Point Controllers

Integration Approach Segmentation

- Standalone Wi-Fi Hotspots
- Managed Wi-Fi Offload

C-RAN

Air Interface Technology Segmentation

- 3G & LTE
- 5G NR

Deployment Model Segmentation

- Indoor
- Outdoor

Cell Size Segmentation

- Small Cells
- Macrocells

Submarket Segmentation

- BBUs (Baseband Units)
- RRHs (Remote Radio Heads)

C-RAN Fronthaul

Technology Segmentation
- Dedicated Fiber
- WDM (Wavelength Division Multiplexing)
- OTN (Optical Transport Network)
- PON (Passive Optical Network)
- Ethernet
- Microwave
- Millimeter Wave
- G.Fast & Others

DAS

Deployment Model Segmentation

- Indoor
- Outdoor

Regional Markets

- Asia Pacific
- Eastern Europe
- Latin & Central America
- Middle East & Africa
- North America
- Western Europe

Key Questions Answered

The report provides answers to the following key questions:

- How big is the HetNet opportunity?
- What trends, challenges and barriers are influencing its growth?
- How is the ecosystem evolving by segment and region?
- What will the market size be in 2020 and at what rate will it grow?
- Which submarkets will see the highest percentage of growth?
- How can HetNet infrastructure investments improve wireless coverage and alleviate congestion in mobile operator networks?
- Can virtualized small cells reduce the TCO (Total Cost of Ownership) of HetNet deployments?
- How are mobile operators leveraging small cells to deliver cost-effective wireless coverage in rural areas?
- What is the commercial status of unlicensed and shared spectrum technologies?
- How are small cell, DAS and Wi-Fi specialists addressing requirements for multi-operator neutral host networks?
- What are the prospects of microwave and millimeter wave transport networking platforms for small cell backhaul and C-RAN fronthaul?
- Will mobile operators adopt WiGig and other non-3GPP technologies to complement 5G network rollouts?
- Who are the key market players, what is their market share and what are their strategies?
- What strategies should HetNet infrastructure vendors and mobile operators adopt to remain competitive?

Key Findings

The report has the following key findings:

- SNS Research estimates that global investments on small cells, carrier Wi-Fi, C-RAN and DAS will reach more than $15 Billion by the end of 2017, as mobile operators remain committed to tackle the continued growth of mobile data traffic and evolving coverage requirements.
- At present, the HetNet market is facing a paradigm shift with multiple advancements ranging from small cell virtualization and neutral hosting to the adoption of unlicensed and shared spectrum.
- In conjunction with 5G and LTE Advanced network rollouts, these advancements will fuel the market to grow at a CAGR of over 18% between 2017 and 2020.
- By virtualizing small cells, mobile operators can immediately evaluate the benefits of RAN virtualization with no major impact on their larger macrocell RAN footprint. SNS research estimates that global spending on virtualized small cells will surpass $1 Billion annually by 2020.
- Unlicensed and shared spectrum small cells are also beginning to gain traction, with shipment revenues potentially reaching $240 Million by the end of 2020.
- The vendor arena is continuing to consolidate with several prominent M&A deals such as CCI's (Communication Components, Inc.) acquisition of BLiNQ Networks and Mavenir's merger with Ranzure Networks.

Make an Enquiry of this report @ http://www.researchmoz.us/enquiry.php?type=E&repid=1170820

Global Investments In C-RAN Architecture Networks Will Reach Nearly $9 Billion By The End Of 2017 At A CAGR Of Approximately 24% Between 2017 And 2020

Researchmoz added Most up-to-date research on " The C-RAN (Centralized Radio Access Network) Ecosystem: 2017 - 2030 - Opportunities, Challenges, Strategies & Forecasts" to its huge collection of research reports.

Centralized RAN or C-RAN is an architectural shift in RAN (Radio Access Network) design, where the bulk of baseband processing is centralized and aggregated for a large number of distributed radio nodes. In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as baseband pooling, enhanced coordination between cells, virtualization, network extensibility, smaller deployment footprint and reduced power consumption.

Browse Detail Report With Full TOC @ http://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2017-2030-opportunities-challenges-strategies-forecasts-report.html

Initially popularized by Japanese and South Korean mobile operators, C-RAN technology is beginning to gain momentum worldwide with major tier 1 operators –  including Verizon Communications, AT&T, Sprint, China Mobile, Vodafone, TIM (Telecom Italia Mobile), Orange and Telefónica –  seeking to leverage the benefits of centralized baseband processing.

SNS Research estimates that global investments in C-RAN architecture networks will reach nearly $9 Billion by the end of 2017. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020. These investments will include spending on RRHs (Remote Radio Heads), BBUs (Baseband Units) and fronthaul transport network equipment.

The “C-RAN (Centralized Radio Access Network) Ecosystem: 2017 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the C-RAN ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models, operator case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for C-RAN infrastructure investments from 2017 till 2030. The forecasts cover 3 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

Key Findings:

The report has the following key findings:

- Expected to reach nearly $9 Billion in global spending by the end of 2017, C-RAN is increasingly becoming the preferred approach to deploy future mobile networks. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020.
- Small cells are also beginning to be deployed in a C-RAN architecture to leverage the benefits of resource pooling and multi-cell coordination. This trend is particularly prevalent in the indoor and enterprise segments, with a number of dedicated vendor solutions such as CommScope's OneCell, SpiderCloud's E-RAN, Ericsson's Radio Dot, and Huawei's LampSite.
- Mobile operators are exploring multiple baseband functional split options for C-RAN implementation, as they seek to ease the transition to 5G networks while reducing fronthaul costs.
- By the end of 2020, SNS Research estimates that vRAN/Cloud RAN deployments with virtualized baseband processing will account for nearly 20% of all C-RAN investments.
- The vendor arena is continuing to consolidate with several prominent M&A deals such as Mavenir Systems' recent merger with C-RAN specialist Ranzure Networks, which has positioned the company as an end-to-end provider of 5G-ready mobile network solutions.

Topics Covered:

The report covers the following topics:

- C-RAN ecosystem
- Market drivers and barriers
- Key architectural components (RRH, BBU and fronthaul)
- Competing RAN architectures including traditional macrocell base stations, standalone small cells and DAS (Distributed Antenna Systems)
- Key trends including baseband functional splitting, enterprise RAN, vRAN (Virtualized RAN)/Cloud RAN, MEC (Mobile Edge Computing) and RANaaS (RAN-as-a-Service)
- Fronthaul networking technologies and interface options
- C-RAN deployment models and mobile operator case studies
- Regulatory landscape and standardization
- Industry roadmap and value chain
- Profiles and strategies of over 230 leading ecosystem players including enabling technology providers, radio equipment suppliers, BBU vendors, fronthaul network equipment vendors and mobile operators
- Strategic recommendations for ecosystem players including C-RAN solution providers and mobile operators
- Market analysis and forecasts from 2017 till 2030

To Get Sample Copy of Report visit @ http://www.researchmoz.us/enquiry.php?type=S&repid=1237586

Forecast Segmentation:

Market forecasts are provided for each of the following submarkets and their subcategories:

- Submarket Segmentation
- RRHs (Remote Radio Heads)
- BBUs (Baseband Units)
- Fronthaul
- Air Interface Technology Segmentation
- 3G & LTE
- 5G NR (New Radio)
- Network Architecture Segmentation
- Non-Virtualized C-RAN
- vRAN/Cloud RAN
- Deployment Model Segmentation
- Indoor
- Outdoor
- Cell Size Segmentation
- Small Cells
- Macrocells
- Fronthaul Transport Network Technology Segmentation
- Dedicated Fiber
- WDM (Wavelength Division Multiplexing)
- OTN (Optical Transport Network)
- PON (Passive Optical Network)
- Ethernet
- Microwave
- Millimeter Wave
- G.Fast & Others
- Regional Markets
- Asia Pacific
- Eastern Europe
- Middle East & Africa
- Latin & Central America
- North America
- Western Europe

Key Questions Answered:

The report provides answers to the following key questions:

- How big is the C-RAN opportunity?
- What trends, challenges and barriers are influencing its growth?
- How is the ecosystem evolving by segment and region?
- What will the market size be in 2020 and at what rate will it grow?
- Which submarkets will see the highest percentage of growth?
- How can C-RAN facilitate the management of interference and LTE-Advanced features such as CoMP (Coordinated Multi-Point)?
- What are the benefits and drawbacks of each baseband functional split option?
- How can C-RAN reduce the TCO (Total Cost of Ownership) of RAN deployments?
- What are the prospects of wireless fronthaul technologies?
- Is Ethernet a feasible solution for fronthaul networking?
- How big is the market for vRAN/Cloud RAN networks?
- How can mobile operators future-proof their RAN investments for 5G upgrades?
- Who are the key market players and what are their strategies?
- What strategies should C-RAN solution providers and mobile operators adopt to remain competitive?

List of Companies Mentioned:

The following companies and organizations have been reviewed, discussed or mentioned in the report:

- 3GPP (3rd Generation Partnership Project)
- 3Roam
- 6WIND
- Accelink Technologies Corporation
- Accelleran
- Actelis Networks
- ADLINK Technology
- ADTRAN
- ADVA Optical Networking
- Advantech
- Airspan Networks
- Alpha Networks
- Alphabet
- Altiostar Networks
- Amarisoft
- América Móvil Group
- Anritsu Corporation
- APRESIA Systems
- Aquantia Corporation
- Argela
- ARIB (Association of Radio Industries and Businesses, Japan)
- Aricent
- ARM Holdings
- ARRIS International
- Artemis Networks
- Artesyn Embedded Technologies
- Artiza Networks
- ASOCS
- ASTRI (Hong Kong Applied Science and Technology Research Institute)
- AT&T
- ATIS (Alliance for Telecommunications Industry Solutions, United States)
- Aviat Networks
- Axxcelera Broadband Wireless
- Azcom Technology
- Baicells Technologies
- Benetel
- Blu Wireless Technology
- BluWan
- Boomsense/Bangxun Technology
- BridgeWave Communications
- Broadband Forum
- Broadcom
- BT Group
- CableFree (Wireless Excellence)
- Cadence Design Systems
- Calix
- Cambium Networks
- Casa Systems
- Cavium
- CBNL (Cambridge Broadband Networks Ltd.)
- CCI (Communication Components, Inc.)
- CCS (Cambridge Communication Systems)
- CCSA (China Communications Standards Association)
- cellXica
- Ceragon Networks
- CEVA
- China Mobile
- China Telecom
- China Unicom
- Ciena Corporation
- Cisco Systems
- Clavister
- Cobham Wireless
- Coherent Logix
- Collision Communications
- Comcores
- CommAgility
- CommScope
- Contela
- Corecess
- Coriant
- Corning
- Dali Wireless
- DASAN Zhone Solutions
- Datang Mobile
- Dell Technologies
- DragonWave
- eASIC Corporation
- E-Band Communications
- EBlink
- ECI Telecom
- EE
- Ekinops
- ELVA-1
- Eoptolink Technology
- Ericsson
- Ethernity Networks
- ETRI (Electronics & Telecommunications Research Institute, South Korea)
- ETSI (European Telecommunications Standards Institute)
- Exalt Wireless
- EXFO
- ExteNet Systems
- Extreme Networks
- Facebook
- Fairwaves
- Faraday Technology Corporation
- FastBack Networks
- FiberHome Technologies
- FibroLan
- Finisar Corporation
- Flex Logix Technologies
- Foxconn Interconnect Technology
- Fraunhofer FOKUS  (Institute for Open Communication Systems)
- Fraunhofer HHI (Heinrich Hertz Institute)
- Frog Cellsat
- Fujian Sunnada Network Technology
- Fujitsu
- Furukawa Electric Group
- GigaLight
- GlobalFoundaries
- Google
- HCL Technologies
- HFR
- Hisense
- Hitachi
- HPE (Hewlett Packard Enterprise)
- Huahuan
- Huawei
- HUBER+SUHNER
- HXI
- IBM Corporation
- IDT (Integrated Device Technology)
- IEEE (Institute of Electrical and Electronics Engineers)
- Imec International
- InCoax
- Infineon Technologies
- Infinera
- InfiNet Wireless
- InnoLight Technology
- InnoWireless
- Intel Corporation
- InterDigital
- Intracom Telecom
- IP Light
- ip.access
- IPITEK
- Iskratel
- IS-Wireless
- ITRI (Industrial Technology Research Institute, Taiwan)
- ITU (International Telecommunications Union)
- JMA Wireless
- JRC (Japan Radio Company)
- Juni Global
- Kathrein-Werke KG
- KDDI Corporation
- KEYMILE
- Keysight Technologies
- Kisan Telecom
- KMW
- KPN
- KT Corporation
- Lattice Semiconductor
- LG Uplus
- LightPointe Communications
- Lindsay Broadband
- Loea Corporation
- Lumentum
- Luminate Wireless
- MACOM Technology Solutions Holdings
- Maja Systems
- Maven Wireless
- Mavenir Systems
- MAX4G
- MaxLinear
- MEF (Metro Ethernet Forum)
- MegaFon
- Mellanox Technologies
- Microsemi Corporation
- Microwave Networks
- MIMOtech
- Mitsubishi Electric Corporation
- Mobiveil
- Molex
- Moseley Associates
- MRV Communications
- MTI (Microelectronics Technology, Inc.)
- N.A.T.
- Nash Technologies
- NEC Corporation
- Netonomics
- NETSCOUT Systems
- New Postcom Equipment
- Nexcomm Systems
- NexxCom Wireless
- NGMN (Next Generation Mobile Networks) Alliance
- Node-H
- Nokia
- Nokia Networks
- Nokia Technologies
- NTT DoCoMo
- NuRAN Wireless
- Nutaq Innovation
- NXP Semiconductors
- Octasic
- OE Solutions
- Omnitron Systems
- ON.Lab (Open Networking Lab)
- OneAccess Networks
- ONF (Open Networking Foundation)
- Orange
- OSA (OpenAirInterface Software Alliance)
- Parallel Wireless
- Peraso Technologies
- Phluido
- PMN (Private Mobile Networks)
- Polewall
- Potevio
- Proxim Wireless Corporation
- Qualcomm
- Qucell
- Qwilt
- RACOM
- RAD Data Communications
- Radisys Corporation
- RADWIN
- Raisecom
- Range Networks
- Red Hat
- Redline Communications
- REMEC Broadband Wireless Networks
- Saguna Networks
- SAI Technology
- Samji Electronics
- Samsung Electronics
- Sarokal Test Systems
- SCF (Small Cell Forum)
- SerComm Corporation
- SIAE Microelectronica
- Siklu Communication
- Sistelbanda
- SITRONICS
- SK Telecom
- SK Telesys
- SkyFiber
- SoftBank Group
- Solectek Corporation
- SOLiD
- Sooktha
- Source Photonics
- Spectronite
- SpiderCloud Wireless
- Sprint Corporation
- SRS (Software Radio Systems)
- Star Solutions
- Sumitomo Electric Industries
- Sunwave Solutions
- Tarana Wireless
- Tata Elxsi
- TEKTELIC Communications
- Telco Systems
- Telecom Italia Group
- Telefónica Group
- Telenor Group
- Tellabs
- Tellion
- Telrad Networks
- Telus Corporation
- TI (Texas Instruments)
- TIM (Telecom Italia Mobile)
- Trango Systems
- Transition Networks
- TSDSI (Telecommunications Standards Development Society, India)
- TTA (Telecommunications Technology Association, South Korea)
- TTC (Telecommunication Technology Committee, Japan)
- Ubiquoss
- UTStarcom
- Vanu
- Verizon Communications
- Viavi Solutions
- VMware
- Vodafone Group
- Vubiq Networks
- Wave1
- WiPro
- Xelic
- Xilinx
- xRAN Consortium
- Zain Group
- ZTE

Make an Enquiry of this report @ http://www.researchmoz.us/enquiry.php?type=E&repid=1237586

Thursday, 3 August 2017

Small Cells, Carrier WiFi, DAS And C-RAN Networks To Account For Over 50% Of All Mobile Data Traffic And Overall Spending On Hetnet Infrastructure Is Expected To Reach $20 Billion Annually During The Period 2014 - 2020

Researchmoz added Most up-to-date research on "The HetNet Bible (Small Cells, Carrier WiFi, DAS & C-RAN): 2014 - 2020 - Opportunities, Challenges, Strategies, & Forecasts" to its huge collection of research reports.

Driven by in-building wireless coverage requirements and the growing influx of mobile broadband data traffic, a traditional macrocell based cellular network deployment is not deemed to be a sufficient solution to address the coverage and capacity needs of today’s wireless subscribers.

To Get Sample Copy of Report visit @ http://www.researchmoz.us/enquiry.php?type=S&repid=232300

Wireless carriers are thus exploring options to offload additional coverage and capacity to alternatives such as strategically deployed small cells and WiFi access points, which have so far been deployed by more than 200 global wireless carriers. Adding further to the heterogeneity are alternative deployment models such as DAS (Distributed Antenna Systems) and the emerging C-RAN (Cloud Radio Access Networks) architecture which concentrates the processing of the RAN segment of a mobile network in one or more, centralized data centers.

Driven by the thriving ecosystem, we expect small cells, carrier WiFi, DAS and C-RAN networks to account for over 50% of all mobile data traffic by the end of 2015, while overall spending on HetNet infrastructure is expected to reach $20 Billion annually during the same period.

This report presents an in-depth assessment of the global small cells, carrier WiFi, DAS and C-RAN markets.  In addition to covering the technology, business case, the challenges, standardization initiatives, the industry’s roadmap, value chain analysis, deployment case studies, vendor service/product strategies and strategic recommendations, the report also presents comprehensive forecasts for the market from 2014 till 2020, including individual revenue and shipment projections of small cells, carrier WiFi, small cell backhaul, SCaaS (Small Cells as a Service), DAS, C-RAN, SON (Self-Organizing Network) and mobile data services across six geographical regions.

Also provided are historical figures for 2010, 2011, 2012 and 2013. The report comes with an associated Excel datasheet covering quantitative data from all numeric figures presented in the report.

Key Findings:

The report has the following key findings:

- Small cells, carrier WiFi, DAS and C-RAN infrastructure investments will account for a $20 Billion HetNet ecosystem by 2020
- HetNet infrastructure is expected to carry more than 70% of all mobile network data traffic by 2020, which will account for $380 Billion in mobile data service revenue
- At present, the HetNet value chain is highly fragmented with pure-play specialists and incumbent macrocell vendors battling to gain a higher share of the market
- SNS Research expects the value chain to consolidate over the coming years following a string of acquisitions by industry giants such as Intel, Ericsson, Cisco and Nokia
- Eyeing the momentum behind small cell and C-RAN deployments, several DAS vendors, such as BTI Wireless and Kathrein-Werke KG, have developed small cell and C-RAN offerings
- Small cell vendors such as Airvana are also adopting C-RAN centric architectures
- Enterprise RAN investments based on combination of small cells and coordination platforms are expected to reach $5 Billion by the end of 2020
- While it is a preferred opinion among wireless carriers, aggregating outdoor small cell backhaul with macrocell infrastructure may prove to be a well challenging task. Consequently the demand for small cell backhauling has opened a new opportunity for investment, which will be a market worth nearly $6 Billion by 2020
- Spending on mobile fronthaul solutions will grow at a CAGR of nearly 40% between 2014 and 2020. By the end of 2020, mobile fronthaul investments will account for nearly $2.6 Billion in revenue

Browse Detail Report With Full TOC @ http://www.researchmoz.us/the-hetnet-bible-small-cells-carrier-wifi-das-and-c-ran-2014-2020-opportunities-challenges-strategies-and-forecasts-report.html

Topics Covered:

The report covers the following topics:

- Small cell, carrier WiFi, DAS and  C-RAN technology, and architecture
- Integration and offloading technology for HetNets
- Market drivers and key benefits of HetNets
- Challenges and Inhibitors to the HetNet ecosystem
- HetNet industry roadmap: 2010 – 2020
- HetNet industry value chain
- Vendor landscape and acquisitions
- HetNet deployment models
- Vertical markets for HetNet deployments
- Small cell backhaul and C-RAN fronthaul technology, requirements and key issues
- Standardization and regulatory initiatives
- SCaaS (Small Cells as a Service)
- Small cell, SCaaS, C-RAN, DAS and carrier WiFi deployment case studies
- Industry, wireless carrier and vendor commitments to HetNet deployments
- Enterprise RAN solutions
- Public safety and military centric LTE small cells
- WiFi enabled LTE gateways
- SON (Self-Organizing Network) technology

Profiles and market positioning assessment (current strategy, target market and products/services) for the following players in the HetNet market: pure-play small cell vendors, DAS, RRH (Remote Radio Head) & repeater solution providers, carrier WiFi focused vendors, C-RAN solution providers, HetNet focused SON solution providers, wireless network (Macrocell, Core) infrastructure vendors, chipset, software, technology & component vendors, test & measurement solution providers, WiFi network providers and fronthaul/backhaul solution providers

Conclusion and strategic recommendations for HetNet solution vendors, wireless carriers and macrocell infrastructure vendors

Market analysis and forecasts for the industry’s revenue, including the following submarkets:
- Small Cells
- Carrier WiFi
- SCaaS (Small Cells as a Service)
- DAS (Distributed Antenna Systems)
- C-RAN (Cloud Radio Access Networks)
- SON (Self-Organizing Network) Solutions
- Enterprise RAN
- Small Cell Backhaul
- Mobile Fronthaul
- Mobile Network Data Service

Small cell forecasts (unit shipments, revenue, installed base) are categorized in the following  categories:

- RAN Technology
- GSM/W-CDMA/HSPA
- CDMA-2000/EV-DO
- LTE FDD
- TD-LTE
- WiMAX
- Deployment Model
- Home/Residential
- Enterprise
- Metro
- Rural
- Cell Size
- Femtocells
- Picocells
- Microcells

Carrier WiFi forecasts (unit shipments, revenue, installed base) are categorized in the following  categories:

- Equipment Category
- Access Points
- Access Point Controllers
- Integration Approach
- Managed WiFi Offload
- Unmanaged ‘Open Access’ WiFi

Small cell backhaul forecasts (revenue) are categorized in the following technology categories:

- Ethernet over Copper
- Ethernet over Fiber
- DSL modems and DSLAMs
- NLOS (Non Line of Sight) Microwave (Sub-6GHz spectrum)
- PTP (Point to Point) Microwave (6-60GHz)
- PTMP (Point to Multipoint) Microwave (6-60GHz)
- Millimeter Wave (Unlicensed 60GHz spectrum)
- Millimeter Wave (Licensed 60GHz spectrum)
- Satellite

Mobile network data service forecasts (throughput and revenue) are categorized in the following access network technology categories:

- Macrocell & C-RAN Networks
- Small Cells
- Carrier WiFi
- DAS

Regional forecasts are categorized in the following 6 categories

- North America
- Asia Pacific
- Western Europe
- Eastern Europe
- Middle East & Africa
- Latin & Central America

Key Questions Answered:

The report provides answers to the following key questions:

- What are the key market drivers and challenges in the HetNet ecosystem?
- How big is the HetNet ecosystem, and how much revenue will it generate in 2020?
- What will be the installed base of small cells and carrier WiFi access points in 2020?
- Which geographical regions offer the greatest growth potential for HetNet deployments?
- What is the service revenue for mobile data services delivered over small cells, carrier WiFi, DAS, C-RAN and macrocells, and how will this vary overtime?
- How are investments on DAS technology impacting small cell and carrier WiFi deployments?
- What is the C-RAN concept, and how does it affect the small cell, DAS and carrier WiFi markets?
- Which technology will be predominant in the small cell backhaul ecosystem and is there a market for satellite based small cell backhaul?
- Is there a market for rural small cell deployments?
- How big are the opportunities for SCaaS (Small Cells as a Service) and enterprise RAN deployments?
- How is the HetNet value chain structured and how will it evolve overtime?
- What opportunities does the HetNet ecosystem offer to infrastructure vendors and other players involved in the value chain?
- What strategies should infrastructure vendors and wireless carriers adopt to capitalize on the HetNet opportunity?
- Can small cells help in accelerating LTE deployments for the military, public safety and other verticals?

List of Companies Mentioned:

The following companies have been mentioned in the report:

- 3GPP
- 3Roam
- 4ipnet
- 4RF
- 6WIND
- ABB
- Ablaze
- Ablaze Wireless
- Accedian Networks
- Accel Partners
- Accelleran
- Accuris Networks
- AceAxis
- Acer
- Acme Packet
- ACS (Applied Communication Sciences)
- Actelis Networks
- Actiontec
- Actix
- Actus Networks
- Adara Venture Partners
- Adax
- ADB
- ADI (Analog Devices Inc.)
- ADLINK Technology
- ADRF (Advanced RF Technologies)
- ADTRAN
- ADVA Optical Networking
- Advanced RF Technologies
- Advantech Wireless
- Aepona
- Aerohive
- Affarii Technologies
- Affirmed Networks
- Agilent Technologies
- AICENT
- Airbus Defence & Space
- Aircom International
- AirHop Communications
- Airspan Networks
- Airvana
- AirWalk
- AJ Telecom Group
- AKM (Asahi Kasei Microdevices)
- ALAXALA Networks
- Albis Technologies
- Albtelecom
- Alcatel-Lucent
- ALCOMA
- Alifabs Group
- Allied Data Technologies
- Allied Telesis
- Alpha Networks
- Altera
- Altiostar Networks
- Altobridge
- Alvarion
- AlwaysOn
- Amadeus Capital Partners
- Amdocs
- American Tower Corporation
- Andrew Corporation
- Anite
- Anixter
- Anritsu Corporation
- Anvaya Networks
- Anziva Technologies
- Aoptix
- Aperto Networks
- Applied Communication Sciences
- Aptilo Networks
- Arcadyan Technology Corporation
- Argela
- Aria
- ARIB (Association of Radio Industries and Businesses) –  Japan
- Aricent
- Arieso
- ARItel
- Arqiva
- Arris
- Artemis Networks
- Aruba Networks
- Askey Computer Corporation
- ASOCS
- Astellia
- ASUS
- AT&T
- AT&T Mobility
- Athena Wireless Communications
- Atomico
- Augere Bangladesh
- August Capital
- Avanti Communications
- Avaya
- AveA
- Aviat Networks
- AVM
- AWTG (Advanced Wireless Technology Group)
- Axell Wireless
- Axis Teknologies
- Axxcelera
- Azcom Technology

Make an Enquiry of this report @ http://www.researchmoz.us/enquiry.php?type=E&repid=232300

Tuesday, 18 July 2017

Global Investments In C-RAN Architecture Networks Market Is Expected To Grow At A CAGR Of Approximately 24% Between 2017 And 2020

Researchmoz added Most up-to-date research on " The C-RAN (Centralized Radio Access Network) Ecosystem: 2017 - 2030 - Opportunities, Challenges, Strategies & Forecasts" to its huge collection of research reports.

Centralized RAN or C-RAN is an architectural shift in RAN (Radio Access Network) design, where the bulk of baseband processing is centralized and aggregated for a large number of distributed radio nodes. In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as baseband pooling, enhanced coordination between cells, virtualization, network extensibility, smaller deployment footprint and reduced power consumption.

Browse Detail Report With Full TOC @ http://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2017-2030-opportunities-challenges-strategies-forecasts-report.html

Initially popularized by Japanese and South Korean mobile operators, C-RAN technology is beginning to gain momentum worldwide with major tier 1 operators –  including Verizon Communications, AT&T, Sprint, China Mobile, Vodafone, TIM (Telecom Italia Mobile), Orange and Telefónica –  seeking to leverage the benefits of centralized baseband processing.

SNS Research estimates that global investments in C-RAN architecture networks will reach nearly $9 Billion by the end of 2017. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020. These investments will include spending on RRHs (Remote Radio Heads), BBUs (Baseband Units) and fronthaul transport network equipment.

The “C-RAN (Centralized Radio Access Network) Ecosystem: 2017 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the C-RAN ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models, operator case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for C-RAN infrastructure investments from 2017 till 2030. The forecasts cover 3 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

Key Findings:

The report has the following key findings:

- Expected to reach nearly $9 Billion in global spending by the end of 2017, C-RAN is increasingly becoming the preferred approach to deploy future mobile networks. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020.
- Small cells are also beginning to be deployed in a C-RAN architecture to leverage the benefits of resource pooling and multi-cell coordination. This trend is particularly prevalent in the indoor and enterprise segments, with a number of dedicated vendor solutions such as CommScope's OneCell, SpiderCloud's E-RAN, Ericsson's Radio Dot, and Huawei's LampSite.
- Mobile operators are exploring multiple baseband functional split options for C-RAN implementation, as they seek to ease the transition to 5G networks while reducing fronthaul costs.
- By the end of 2020, SNS Research estimates that vRAN/Cloud RAN deployments with virtualized baseband processing will account for nearly 20% of all C-RAN investments.
- The vendor arena is continuing to consolidate with several prominent M&A deals such as Mavenir Systems' recent merger with C-RAN specialist Ranzure Networks, which has positioned the company as an end-to-end provider of 5G-ready mobile network solutions.

Topics Covered:

The report covers the following topics:

- C-RAN ecosystem
- Market drivers and barriers
- Key architectural components (RRH, BBU and fronthaul)
- Competing RAN architectures including traditional macrocell base stations, standalone small cells and DAS (Distributed Antenna Systems)
- Key trends including baseband functional splitting, enterprise RAN, vRAN (Virtualized RAN)/Cloud RAN, MEC (Mobile Edge Computing) and RANaaS (RAN-as-a-Service)
- Fronthaul networking technologies and interface options
- C-RAN deployment models and mobile operator case studies
- Regulatory landscape and standardization
- Industry roadmap and value chain
- Profiles and strategies of over 230 leading ecosystem players including enabling technology providers, radio equipment suppliers, BBU vendors, fronthaul network equipment vendors and mobile operators
- Strategic recommendations for ecosystem players including C-RAN solution providers and mobile operators
- Market analysis and forecasts from 2017 till 2030

To Get Sample Copy of Report visit @ http://www.researchmoz.us/enquiry.php?type=S&repid=1237586

Forecast Segmentation:

Market forecasts are provided for each of the following submarkets and their subcategories:

- Submarket Segmentation
- RRHs (Remote Radio Heads)
- BBUs (Baseband Units)
- Fronthaul
- Air Interface Technology Segmentation
- 3G & LTE
- 5G NR (New Radio)
- Network Architecture Segmentation
- Non-Virtualized C-RAN
- vRAN/Cloud RAN
- Deployment Model Segmentation
- Indoor
- Outdoor
- Cell Size Segmentation
- Small Cells
- Macrocells
- Fronthaul Transport Network Technology Segmentation
- Dedicated Fiber
- WDM (Wavelength Division Multiplexing)
- OTN (Optical Transport Network)
- PON (Passive Optical Network)
- Ethernet
- Microwave
- Millimeter Wave
- G.Fast & Others
- Regional Markets
- Asia Pacific
- Eastern Europe
- Middle East & Africa
- Latin & Central America
- North America
- Western Europe

Key Questions Answered:

The report provides answers to the following key questions:

- How big is the C-RAN opportunity?
- What trends, challenges and barriers are influencing its growth?
- How is the ecosystem evolving by segment and region?
- What will the market size be in 2020 and at what rate will it grow?
- Which submarkets will see the highest percentage of growth?
- How can C-RAN facilitate the management of interference and LTE-Advanced features such as CoMP (Coordinated Multi-Point)?
- What are the benefits and drawbacks of each baseband functional split option?
- How can C-RAN reduce the TCO (Total Cost of Ownership) of RAN deployments?
- What are the prospects of wireless fronthaul technologies?
- Is Ethernet a feasible solution for fronthaul networking?
- How big is the market for vRAN/Cloud RAN networks?
- How can mobile operators future-proof their RAN investments for 5G upgrades?
- Who are the key market players and what are their strategies?
- What strategies should C-RAN solution providers and mobile operators adopt to remain competitive?

List of Companies Mentioned:

The following companies and organizations have been reviewed, discussed or mentioned in the report:

- 3GPP (3rd Generation Partnership Project)
- 3Roam
- 6WIND
- Accelink Technologies Corporation
- Accelleran
- Actelis Networks
- ADLINK Technology
- ADTRAN
- ADVA Optical Networking
- Advantech
- Airspan Networks
- Alpha Networks
- Alphabet
- Altiostar Networks
- Amarisoft
- América Móvil Group
- Anritsu Corporation
- APRESIA Systems
- Aquantia Corporation
- Argela
- ARIB (Association of Radio Industries and Businesses, Japan)
- Aricent
- ARM Holdings
- ARRIS International
- Artemis Networks
- Artesyn Embedded Technologies
- Artiza Networks
- ASOCS
- ASTRI (Hong Kong Applied Science and Technology Research Institute)
- AT&T
- ATIS (Alliance for Telecommunications Industry Solutions, United States)
- Aviat Networks
- Axxcelera Broadband Wireless
- Azcom Technology
- Baicells Technologies
- Benetel
- Blu Wireless Technology
- BluWan
- Boomsense/Bangxun Technology
- BridgeWave Communications
- Broadband Forum
- Broadcom
- BT Group
- CableFree (Wireless Excellence)
- Cadence Design Systems
- Calix
- Cambium Networks
- Casa Systems
- Cavium
- CBNL (Cambridge Broadband Networks Ltd.)
- CCI (Communication Components, Inc.)
- CCS (Cambridge Communication Systems)
- CCSA (China Communications Standards Association)
- cellXica
- Ceragon Networks
- CEVA
- China Mobile
- China Telecom
- China Unicom
- Ciena Corporation
- Cisco Systems
- Clavister
- Cobham Wireless
- Coherent Logix
- Collision Communications
- Comcores
- CommAgility
- CommScope
- Contela
- Corecess
- Coriant
- Corning
- Dali Wireless
- DASAN Zhone Solutions
- Datang Mobile
- Dell Technologies
- DragonWave
- eASIC Corporation
- E-Band Communications
- EBlink
- ECI Telecom
- EE
- Ekinops
- ELVA-1
- Eoptolink Technology
- Ericsson
- Ethernity Networks
- ETRI (Electronics & Telecommunications Research Institute, South Korea)
- ETSI (European Telecommunications Standards Institute)
- Exalt Wireless
- EXFO
- ExteNet Systems
- Extreme Networks
- Facebook
- Fairwaves
- Faraday Technology Corporation
- FastBack Networks
- FiberHome Technologies
- FibroLan
- Finisar Corporation
- Flex Logix Technologies
- Foxconn Interconnect Technology
- Fraunhofer FOKUS  (Institute for Open Communication Systems)
- Fraunhofer HHI (Heinrich Hertz Institute)
- Frog Cellsat
- Fujian Sunnada Network Technology
- Fujitsu
- Furukawa Electric Group
- GigaLight
- GlobalFoundaries
- Google
- HCL Technologies
- HFR
- Hisense
- Hitachi
- HPE (Hewlett Packard Enterprise)
- Huahuan
- Huawei
- HUBER+SUHNER
- HXI
- IBM Corporation
- IDT (Integrated Device Technology)
- IEEE (Institute of Electrical and Electronics Engineers)
- Imec International
- InCoax
- Infineon Technologies
- Infinera
- InfiNet Wireless
- InnoLight Technology
- InnoWireless
- Intel Corporation
- InterDigital
- Intracom Telecom
- IP Light
- ip.access
- IPITEK
- Iskratel
- IS-Wireless
- ITRI (Industrial Technology Research Institute, Taiwan)
- ITU (International Telecommunications Union)
- JMA Wireless
- JRC (Japan Radio Company)
- Juni Global
- Kathrein-Werke KG
- KDDI Corporation
- KEYMILE
- Keysight Technologies
- Kisan Telecom
- KMW
- KPN
- KT Corporation
- Lattice Semiconductor
- LG Uplus
- LightPointe Communications
- Lindsay Broadband
- Loea Corporation
- Lumentum
- Luminate Wireless
- MACOM Technology Solutions Holdings
- Maja Systems
- Maven Wireless
- Mavenir Systems
- MAX4G
- MaxLinear
- MEF (Metro Ethernet Forum)
- MegaFon
- Mellanox Technologies
- Microsemi Corporation
- Microwave Networks
- MIMOtech
- Mitsubishi Electric Corporation
- Mobiveil
- Molex
- Moseley Associates
- MRV Communications
- MTI (Microelectronics Technology, Inc.)
- N.A.T.
- Nash Technologies
- NEC Corporation
- Netonomics
- NETSCOUT Systems
- New Postcom Equipment
- Nexcomm Systems
- NexxCom Wireless
- NGMN (Next Generation Mobile Networks) Alliance
- Node-H
- Nokia
- Nokia Networks
- Nokia Technologies
- NTT DoCoMo
- NuRAN Wireless
- Nutaq Innovation
- NXP Semiconductors
- Octasic
- OE Solutions
- Omnitron Systems
- ON.Lab (Open Networking Lab)
- OneAccess Networks
- ONF (Open Networking Foundation)
- Orange
- OSA (OpenAirInterface Software Alliance)
- Parallel Wireless
- Peraso Technologies
- Phluido
- PMN (Private Mobile Networks)
- Polewall
- Potevio
- Proxim Wireless Corporation
- Qualcomm
- Qucell
- Qwilt
- RACOM
- RAD Data Communications
- Radisys Corporation
- RADWIN
- Raisecom
- Range Networks
- Red Hat
- Redline Communications
- REMEC Broadband Wireless Networks
- Saguna Networks
- SAI Technology
- Samji Electronics
- Samsung Electronics
- Sarokal Test Systems
- SCF (Small Cell Forum)
- SerComm Corporation
- SIAE Microelectronica
- Siklu Communication
- Sistelbanda
- SITRONICS
- SK Telecom
- SK Telesys
- SkyFiber
- SoftBank Group
- Solectek Corporation
- SOLiD
- Sooktha
- Source Photonics
- Spectronite
- SpiderCloud Wireless
- Sprint Corporation
- SRS (Software Radio Systems)
- Star Solutions
- Sumitomo Electric Industries
- Sunwave Solutions
- Tarana Wireless
- Tata Elxsi
- TEKTELIC Communications
- Telco Systems
- Telecom Italia Group
- Telefónica Group
- Telenor Group
- Tellabs
- Tellion
- Telrad Networks
- Telus Corporation
- TI (Texas Instruments)
- TIM (Telecom Italia Mobile)
- Trango Systems
- Transition Networks
- TSDSI (Telecommunications Standards Development Society, India)
- TTA (Telecommunications Technology Association, South Korea)
- TTC (Telecommunication Technology Committee, Japan)
- Ubiquoss
- UTStarcom
- Vanu
- Verizon Communications
- Viavi Solutions
- VMware
- Vodafone Group
- Vubiq Networks
- Wave1
- WiPro
- Xelic
- Xilinx
- xRAN Consortium
- Zain Group
- ZTE

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