Showing posts with label LTE. Show all posts
Showing posts with label LTE. Show all posts

Wednesday, 15 May 2019

GlobalLTE Testing Equipment Market Shipment and Sales Forecast 2019-2027

Researchmoz added Most up-to-date research on "LTE Testing Equipment Market: Global Industry Analysis 2013-2017 and Opportunity Assessment 2019-2027" to its huge collection of research reports. An insight on the important factors and trends influencing the market.
LTE Testing Equipment Market Report Synopsis
Future Market Insights (FMI) offers a 8-year forecast for the LTE testing equipment market between 2019 and 2027. In terms of value, the LTE testing equipment market is expected to register a double-digit CAGR during the forecast period. The study provides the global market dynamics and trends across six regions: North America, Latin America, Europe, Japan, APEJ and MEA, which influence the current nature and the future status of the LTE testing equipment market over the forecast period.
Download Research Study with Latest Advancements & Application @ https://www.researchmoz.us/enquiry.php?type=S&repid=2237196
LTE Testing Equipment Market Report Description
This research report provides a detailed analysis of the LTE testing equipment market and offers insights on the various factors driving the popularity of LTE testing equipment. The LTE testing equipment market report includes an extensive analysis of the key industry drivers, challenges, market trends and market structure. The LTE testing equipment market study provides a comprehensive assessment of the stakeholder strategies and imperatives for succeeding in the business. The LTE testing equipment market report includes market segmentation on the basis of type, application, end-user and region.
The LTE testing equipment market is expected to witness significant value and volume growth during the forecast period, owing to the high penetration of LTE in various countries around the world and the increasing adoption of mobile phones. .
The global LTE testing equipment market report starts with an overview of the LTE testing equipment market in terms of value and volume. In addition, this section includes an analysis of the key trends, drivers and challenges from the supply, demand and economy side, which are influencing the LTE testing equipment market.
On the basis of type, the LTE testing equipment market has been segmented into OTA Test, Carrier Test, Battery Test, Conformance Test and Field Test. On the basis of application, the LTE testing equipment market has been segmented into research and development, manufacturing, installation and monitoring. On the basis of end-user, the LTE testing equipment market has been segmented into network equipment manufacturer, mobile device manufacturer and telecommunication service provider.
A detailed analysis has been provided for every segment in terms of market size analysis for the LTE testing equipment market across different regions. This section provides a detailed analysis covering the key trends prevalent in the global LTE testing equipment market.
The next section of the global LTE testing equipment market report covers a detailed analysis of the LTE testing equipment market across various countries in the region. It provides an outlook for the LTE testing equipment market for 2019–2027, and sets the forecast within the context of the LTE testing equipment market. This study discusses the key trends within the countries contributing to the growth of the LTE testing equipment market as well as analyses the degrees at which the drivers are influencing LTE testing equipment market in each region. The key regions and countries assessed in the LTE testing equipment market report include North America (the U.S. & Canada), Latin America (Brazil, Mexico & the rest of Latin America), Europe (Germany, U.K., Spain, France, Russia & the Rest of Europe), Japan, APEJ (China, India, Malaysia, Singapore, Australia & the rest of APEJ) and MEA (GCC Countries, Israel, South Africa & the rest of MEA). This report evaluates the present scenario and the growth prospects of the LTE testing equipment market across various regions globally for the period 2019 –2027. We have considered 2018 as the base year and provided data for the remaining 12 months.
To offer an accurate forecast, we have started by sizing the current market, which forms the basis of how the LTE testing equipment market is expected to grow in the future. Given the characteristics of the global LTE testing equipment market, we have triangulated the outcomes of different types of analysis based on the technology trends.
As previously highlighted, the global LTE testing equipment market has been split into a number of segments. All segments on the basis of type, end-user, application and region have been analysed in terms of basis points to understand the relative contribution of each individual segment to the growth of the LTE testing equipment market. This detailed information is important for the identification of various key trends in the global LTE testing equipment market.
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In addition, another key feature of the global LTE testing equipment market report includes the analysis of all the key segments in terms of absolute dollar opportunity. This is traditionally overlooked while forecasting the market, however, the absolute dollar opportunity is critical in assessing the level of opportunity that a provider can look to achieve as well as to identify the potential resources from a sales and delivery perspective in the global LTE testing equipment market.
In the final section of the global LTE testing equipment market report, we have included a competitive landscape to provide clients a dashboard view based on the categories of providers in the value chain, their presence in the LTE testing equipment market and key differentiators. This section is primarily designed to provide clients an objective and detailed comparative assessment of key providers specific to a segment of the LTE testing equipment supply chain and the potential players for the same. Report audiences can gain segment-specific vendor insights to identify and evaluate the key competitors based on an in-depth assessment of their capabilities and success in the LTE testing equipment market. Some of the key competitors covered in the LTE testing equipment market report are ROHDE&SCHWARZ; Anritsu; Agilent Technologies, Inc.; Spirent Communications; Aeroflex Inc.; Anite; Ixia; IDSU; EXFO; TEKTRONIX, INC.; Dana Ter; Fluke Corporation; Zhejiang Dingli Machinery Co, Ltd. and Keysight Technologies, Inc.
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Friday, 29 June 2018

Market Insights: The LTE, LTE-Advanced & 5G Ecosystem Market Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts 2030

Researchmoz added Most up-to-date research on "The LTE, LTE-Advanced & 5G Ecosystem: 2016 - 2030 - Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts" to its huge collection of research reports.

As a natural upgrade path for mobile operators from the previously detached GSM, CDMA and TD-SCDMA ecosystems, LTE has emerged as the first truly global mobile communications standard. Commonly marketed as the “4G” standard, LTE promises to provide higher data rates and lower latency at a much lower TCO (Total Cost of Ownership) than 3G technologies.

The TCO and performance is further enhanced by deployment of small cells and the LTE-Advanced standard, which improves performance and data rates using features such as the aggregation of carriers, interference management and advanced antenna techniques.

With over 500 fully commercial network launches, LTE has become a mainstream technology, and a number of mobile operators have already deployed LTE-Advanced technology. SNS Research estimates that LTE service revenues will account for over $600 Billion in 2016. The figure is further expected to grow at a CAGR of more than 5% over the next four years.

Get PDF for More Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=827473

While LTE and LTE-Advanced deployments are still underway, mobile operators and vendors have already embarked on R&D initiatives to develop so-called “5G” networks, with a vision of commercialization by 2020. 5G is essentially a revolutionary paradigm shift in wireless networking to support the throughput, latency, and scalability requirements of future use cases such as extreme bandwidth augmented reality applications and connectivity management for Billions of M2M (Machine to Machine) devices.

By 2020, LTE and 5G infrastructure investments are expected to account for a market worth $32 Billion. This includes spending on distributed macrocells, small cells, C-RAN architecture equipment and mobile core solutions.

The “LTE, LTE-Advanced & 5G Ecosystem: 2016 – 2030 – Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts” report presents an in-depth assessment of the LTE, LTE-Advanced and 5G ecosystem including key market drivers, challenges, technologies, service revenue potential, deployment strategies, vertical market opportunities, mobile operator case studies, R&D initiatives, future roadmap, value chain, vendor assessment and market share. The report also tracks revenue and shipments for both infrastructure and devices, along with subscription and service revenue from 2016 through to 2030.

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:

- LTE/LTE-Advanced technology and market status
- 5G technology and R&D commitments
- Market drivers and barriers
- TCO comparison with legacy technologies
- LTE/5G infrastructure, devices, subscriptions and service revenue
- Infrastructure and device vendor share
- Antenna systems, RAN, mobile core, backhaul and fronthaul deployment strategies
- Mobile operator reviews, service models, pricing strategies and LTE/5G deployment case studies
- Unlicensed LTE, VoLTE, RCS, eMBMS and M2M services
- Vertical markets for LTE/5G networks
- Industry roadmap and value chain
- Company profiles and strategies of over 90 ecosystem players including infrastructure  vendors, device OEMs and mobile operators
- Market analysis and forecasts from 2016 till 2030

Forecast Segmentation

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

LTE/5G Infrastructure Shipments & Revenue

- Distributed Macrocell Base Stations
- Small Cells
- RRHs (Remote Radio Heads)
- C-RAN BBUs (Centralized RAN Baseband Units)
- Mobile Core

LTE/5G Device Shipments & Revenue

- Handsets
- Tablets
- Embedded M2M Modules
- USB Dongles
- Routers

LTE/5G Subscriptions and Service Revenue

- FDD LTE
- TD-LTE
- 5G

Private LTE/5G Infrastructure Revenue

- Public Safety
- Military
- Energy & Utilities
- Transportation
- Mining & Others

Regional Markets

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

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-lte-lteadvanced-5g-ecosystem-2016-2030-infrastructure-devices-operator-services-verticals-strategies-forecasts-report.html/toc

Key Questions Answered

The report provides answers to the following key questions:

- How big is the LTE, LTE-Advanced and 5G ecosystem?
- How is the ecosystem evolving by segment and region?
- What will the market size be in 2020 and at what rate will it grow?
- What trends, challenges and barriers are influencing its growth?
- Who are the key infrastructure and device vendors, and what are their strategies?
- How will FDD LTE investments compare with TD-LTE?
- What is the outlook for LTE-Advanced adoption?
- What are the future prospects for unlicensed LTE, VoLTE and eMBMS services?
- Will future network rollouts adopt a C-RAN architecture?
- How will NFV and virtualization affect the EPC market?
- What opportunities exist for small cells and how will their proliferation impact the wider LTE/5G infrastructure market?
- How much are vendors and operators investing in 5G R&D efforts?
- What will be the number of 5G subscriptions in 2020 and at what rate will it grow?
- What are the prospects of millimeter wave technology for 5G radio access networking?

Key Findings

The report has the following key findings:

- In 2016, mobile operators will pocket over $600 Billion from commercial LTE service revenues. The figure is further expected to grow at a CAGR of more than 5% over the next four years.
- More than 150 LTE operators have already deployed carrier aggregation technology. By 2020, over 50% of all LTE subscribers will be supported by LTE-Advanced networks.
- Mobile operators are pursuing a range of technologies including unlicensed LTE (LTE-U, LAA, LWA, MulteFire), VoLTE and eMBMS, as they seek to maximize the value of their LTE investments while addressing mobile data traffic growth.
- Although 5G is yet to be standardized, vendors are aggressively investing in 5G development efforts with a principal focus on new air interface transmission schemes, higher frequency bands and advanced antenna technologies such as Massive MIMO and beamforming.
- By 2020, LTE and 5G infrastructure investments are expected to account for a market worth $32 Billion. This includes spending on distributed macrocells, small cells, C-RAN architecture equipment and mobile core solutions."

Companies Mentioned

- 3GPP (3rd Generation Partnership Project)
- 5G-PPP
- Abu Dhabi Police
- Accelerated Concepts
- Accelleran
- Adax
- Affirmed Networks
- Airspan Networks
- Airvana
- Alcatel-Lucent
- Altiostar Networks
- Apple
- Arcadyan Technology Corporation
- Argela
- ARItel
- Artemis Networks
- ASOCS
- ASTRI (Hong Kong Applied Science and Technology Research Institute)
- ASUS (ASUSTeK Computer)
- AT&T
- AT&T Mobility
- Athonet
- Axxcelera Broadband Wireless
- BaiCells
- BBK Electronics Corporation
- Beach Energy
- Belkin International
- BlackBerry
- Brocade Communications Systems
- BT Group
- Busan Transportation Corporation
- Casa Systems
- China Mobile
- China Southern Power Grid
- Cisco Systems
- CommAgility
- CommScope
- Connectem
- Contela
- Coolpad
- Core Network Dynamics
- Datang Group
- Datang Mobile
- D-Link Corporation
- Dovado
- DT (Deutsche Telekom)
- Eden Rock Communications
- EE
- Ericsson
- Etisalat
- ETRI (Electronics and Telecommunications Research Institute)
- Facebook
- Fraunhofer Fokus
- Fujitsu
- Gemtek Technology Company
- GENBAND
- General Dynamics Corporation
- General Dynamics Mission Systems
- Gionee
- Google
- GWT (Global Wireless Technologies)
- Harris County
- Hitachi
- Home Office, UK
- HTC Corporation
- Huawei
- IETF (Internet Engineering Task Force)
- ip.access
- ITU (International Telecommunication Union)
- ITU-R (ITU Radiocommunication Sector)
- JRC (Japan Radio Company)
- Juni Global
- KDDI Corporation
- KT Corporation
- Kumu Networks
- Kyocera Corporation
- Lemko Corporation
- Lenovo
- LG Electronics
- LG Uplus
- Linksys
- LTE-U Forum
- Luminate Wireless
- M1
- Mavenir Systems
- MediaTek
- Meizu
- Microsoft Corporation
- Mitel Networks Corporation
- MOF (Ministry of Oceans and Fisheries, South Korea)
- Moseley Associates
- Motorola Mobility
- Motorola Solutions
- MPSS (Ministry of Public Safety and Security, South Korea)
- MulteFire Alliance
- NEC Corporation
- NEC Mobile Communications
- Netgear
- New Postcom Equipment Company
- Nokia Networks
- Novatel Wireless
- NTT DoCoMo
- NuRAN Wireless
- Nutaq
- O3b Networks
- Oceus Networks
- OPPO
- Orange
- Panasonic Corporation
- Pantech
- Phluido
- Polaris Networks
- Potevio (China Potevio Company)
- Qatar MOI (Ministry of Interior)
- Qualcomm
- Quanta Computer
- Qucell
- Quortus
- Redline Communications
- Ruckus Wireless
- Samji Electronics Company
- Samsung Electronics
- Samsung Group
- SerComm Corporation
- SES
- Sharp Corporation
- Sierra Wireless
- Singtel
- SK Telecom
- SK Telesys
- SoftBank Group
- Sony Mobile Communications
- SpiderCloud Wireless
- Spreadtrum
- Sprint Corporation
- Star Solutions
- STC (Saudi Telecom Company)
- Sunnada (Fujian Sunnada Communication Company)
- Tampnet
- TCL Communication
- Tecore
- TEKTELIC Communications
- Telrad Networks
- Telum
- Telus
- TEN (Texas Energy Network)
- T-Mobile USA
- TrustComm
- U.S. Navy
- UQ Communications
- Verizon Communications
- Verizon Wireless
- Vivo
- Vodacom Group
- Vodafone Group
- Wi-Fi Alliance
- WNC (Wistron NeWeb Corporation)
- Xiaomi
- Z-com (ZDC Wireless)
- 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

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=827473

VoLTE service revenue will grow at a CAGR of 34% between 2016 and 2020

ResearchMoz prepared this most up-to-date research on "The VoLTE (Voice over LTE) Ecosystem: 2016 - 2030 - Opportunities, Challenges, Strategies & Forecasts".

VoLTE (Voice over LTE) technology allows a voice call to be placed over an LTE network, enabling mobile operators to reduce reliance on legacy circuit-switched networks.  Powered by IMS (IP Multimedia Subsystem) architecture, VoLTE brings a host of benefits to operators ranging from the ability to refarm legacy 2G and 3G spectrum to offering their subscribers a differentiated service experience through capabilities such as HD voice and video telephony.

First deployed by South Korean operators in 2012, VoLTE is beginning to gain momentum globally. As of Q4’2016, more than 80 mobile operators have commercially launched VoLTE services, and several roaming and interoperability agreements are already in place.

Get PDF for More Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=846798

SNS Research estimates that VoLTE service revenue will grow at a CAGR of 34% between 2016 and 2020. By the end of 2020, VoLTE subscribers will account for more than $200 Billion in revenue. Although traditional voice services will constitute a major proportion of this figure, nearly 15% of the revenue will be driven by video calling and supplementary services.

The “VoLTE (Voice over LTE) Ecosystem: 2016 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the VoLTE ecosystem including enabling technologies, key market drivers, challenges, collaborative initiatives, regulatory landscape, standardization, opportunities, operator case studies, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for VoLTE smartphone shipments, subscriptions, service revenue and infrastructure investments from 2016 till 2030. The forecasts cover 7 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:

- VoLTE ecosystem
- Market drivers and barriers
- VoLTE infrastructure, devices, roaming and interconnection technology
- Case studies of 20 commercial VoLTE deployments
- OTT mobile voice and video services
- Complimentary technologies including Wi-Fi calling, RCS and WebRTC
- MCPTT (Mission Critical Push-to-Talk) voice services
- VoLTE services over MVNO networks
- Service assurance platforms for VoLTE
- Regulatory landscape, collaborative initiatives and standardization
- Industry roadmap and value chain
- Profiles and strategies of 100 leading ecosystem players including device OEMs, VoLTE solution providers and mobile operators
- Strategic recommendations for VoLTE solution providers and mobile operators
- Market analysis and forecasts from 2016 till 2030

Forecast Segmentation

VoLTE subscription, service revenue and infrastructure revenue forecasts are provided for each of the following submarkets and their subcategories:

VoLTE Services

- Voice Telephony
- Video and Supplementary Services

VoLTE Infrastructure

- CSCF (Call Session Control Function) Servers
- SBCs (Session Border Controllers)
- VoLTE Application Servers
- Other IMS Elements (HSS, BGCF, MGCF & MRF)
- VoLTE Capable PCRF (Policy & Charging Rules Function) Solutions

Regional Markets

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

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-volte-voice-over-lte-ecosystem-2016-2030-opportunities-challenges-strategies-forecasts-report.html/toc

The report provides answers to the following key questions:

- How big is the VoLTE 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 regions and countries will see the highest percentage of growth?
- How will VoLTE capable smartphone shipments grow over time?
- Who are the key market players and what are their strategies?
- How can VoLTE help operators in reducing the flow of voice subscribers to OTT application providers?
- What are the prospects of Wi-Fi calling, RCS and WebRTC?
- What much will operators invest in VoLTE service assurance solutions?
- How can mobile operators and MVNOs capitalize on VoLTE to drive revenue growth?
- How can VoLTE help operators in refarming their 2G and 3G spectrum assets?
- What is the status of international roaming and VoLTE-to-VoLTE interconnection agreements?
- What strategies should VoLTE solution providers and mobile operators adopt to remain competitive?

The report has the following key findings:

- By 2020, SNS Research estimates that VoLTE services will account for over $200 Billion in annual service revenue, as mobile operators remain committed to VoLTE as the long term solution to secure a fully native IP-based telephony experience.
- As the transition to VoLTE accelerates, mobile operators have already begun shutting down their legacy networks in a bid to reallocate additional spectrum to their LTE networks.
- Japan and South Korea have already shut down their 2G networks, and multiple operators in other parts of the world, including the United States, are in the processing of switching off 2G services. Some operators, such as Telenor Norway, are seeking the closure of their 3G networks as early as 2020.
- Nearly all VoLTE operators are integrating their VoLTE services with Wi-Fi calling in a bid to offer voice services in areas where their licensed spectrum coverage is limited.
- The vendor ecosystem is continuing to consolidate with several acquisitions such as Sonus Networks’ recent takeover of IP communications specialist Taqua.

List of Companies Mentioned

- 3GPP (3rd Generation Partnership Project)
- Accedian Networks
- Affirmed Networks
- Alcatel-Lucent
- ALEPO
- Altair Semiconductor
- Amdocs
- Anite
- Anritsu Corporation
- Apple
- Aptilo Networks
- Aricent
- Ascom
- Astellia
- Asus (ASUSTeK Computer)
- AT&T
- AT&T Mobility
- Belgacom
- BICS
- Broadcom
- BroadSoft
- BT Group
- CCN (Cirrus Core Networks)
- CellMining
- Cellwize
- CENX
- CEVA
- China Mobile
- China Mobile Hong Kong
- Cirpack
- Cisco Systems
- D2 Technologies
- Dell Technologies
- Dialogic Corporation
- DigiTalk
- DigitalRoute
- DT (Deutsche Telekom)
- Du (Emirates Integrated Telecommunications Company)
- Ecrio
- EE
- Empirix
- Ericsson
- Etisalat
- ETRI (Electronics and Telecommunications Research Institute)
- EXFO
- F5 Networks
- Fujitsu
- GCT Semiconductor
- GENBAND
- Gigamon
- GL Communications
- Google
- GSMA
- Hitachi
- HPE (Hewlett Packard Enterprise)
- HTC Corporation
- Huawei
- iBasis
- IBM
- IEEE (Institute of Electrical and Electronics Engineers)
- Imagination Technologies
- IMSWorkX
- InfoVista
- Intel Corporation
- InterDigital
- Interop Technologies
- Iskratel
- Italtel
- ITU (International Telecommunications Union)
- Ixia
- Jibe Mobile
- KDDI Corporation
- Keysight Technologies
- Kineto Wireless
- KISDI (Korea Information Society Development Institute)
- KPN
- KT Corporation
- Lenovo
- LG Electronics
- LG Uplus
- Mavenir Systems
- Metaswitch Networks
- MetroPCS Communications
- Mitel Networks Corporation
- Mobileum
- Monolith Software
- Motorola Mobility
- Mushroom Networks
- MYCOM OSI
- Napatech
- NEC Corporation
- NetScout Systems
- Newfield Wireless
- NewNet Communication Technologies
- NewPace Technology Development
- Nexus Telecom
- Nokia Networks
- NTT DoCoMo
- NXP Semiconductors
- NXP Software
- OpenCloud
- Openet
- Optulink
- Oracle Communications
- Oracle Corporation
- Orange
- Orange Romania
- Pantech
- Polystar
- Qualcomm
- Quortus
- RADCOM
- Radisys Corporation
- Redknee Solutions
- Reliance Industries
- Reliance Jio Infocomm
- Rogers Communications
- Rohde & Schwarz
- Samsung Electronics
- Sandvine
- Sansay
- Sequans Communications
- Sharp Corporation
- SIGOS
- Singtel Group
- SK Telecom
- Skype
- SmarTone
- SoftBank Group
- Sonus Networks
- Sony Mobile Communications
- Spirent Communications
- SPIRIT DSP
- Spreadtrum Communications
- Sprint Corporation
- Summit Tech
- Swisscom
- Syniverse
- SysMech
- Systemics-PAB
- Taqua
- Tektronix Communications
- Telefónica Germany
- Telefónica Group
- Telefónica UK
- Telstra
- Three Hong Kong
- T-Mobile Czech Republic
- T-Mobile USA
- TNS (Transaction Network Services)
- TTA (Telecommunications Technology Association of Korea)
- Verizon Communications
- Verizon Wireless
- Viavi Solutions
- VMware
- Vodafone Czech Republic
- Vodafone Germany
- Vodafone Group
- Vodafone Hutchison Australia
- Vodafone Italy
- Vodafone Portugal
- Vodafone Romania
- Vodafone Spain
- Vodafone Turkey
- Vodafone UK
- VoiceAge Corporation
- Voipfuture
- W3C (World Wide Web Consortium)
- WBA (Wireless Broadband Alliance)
- Wi-Fi Alliance
- WIT Software
- x-Mobility
- ZTE

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

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=846798

LTE for Critical Communications: 2016 - 2030 - Industry Opportunities, Challenges, Strategies Analysis & Forecasts Outlook

Researchmoz added Most up-to-date research on "LTE for Critical Communications: 2016 - 2030 - Opportunities, Challenges, Strategies & Forecasts" to its huge collection of research reports.

For years, the critical communications industry has relied on narrowband LMR (Land Mobile Radio) networks for mission-critical voice and basic data services. Due to the bandwidth limitations of these LMR networks, public safety agencies and other users within the critical communications industry are keen to leverage commercial cellular network technologies to support growing demands for mobile broadband services such as video transmission and bandwidth-intensive field applications.

Considering its thriving ecosystem, spectrum flexibility and performance metrics, LTE has emerged as the leading candidate for critical communications broadband networks. In addition, with the recent approval of the MCPTT (Mission Critical Push to Talk) voice standard as part of 3GPP Release 13, LTE has also become an attractive substitute for providing LMR-like voice services.

Get PDF for More Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=862759

As a result, a growing number of critical communications organizations are deploying either private LTE networks or contracting commercial LTE mobile operator services via MVNO arrangements to complement their existing LMR systems with broadband capabilities.

Driven by early investments in the Middle East and Asia Pacific regions, the market for critical communications LTE networks is already worth $600 Million in annual infrastructure spending. Fueled by large-scale rollouts in the public safety, energy and other sectors, the market is further expected to surpass $2 Billion by the end of 2020. This includes spending on base stations (eNBs), mobile core and transport networking gear.

Spanning over 1,200 pages, the “LTE for Critical Communications: 2016 – 2030 – Opportunities, Challenges, Strategies & Forecasts“ report package encompasses three comprehensive reports covering both commercial and dedicated LTE networks for critical communications.

- The LTE, LTE-Advanced & 5G Ecosystem: 2016 – 2030 – Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts
- The Private LTE Network Ecosystem: 2016 – 2030 – Opportunities, Challenges, Strategies, Industry Verticals & Forecasts
- The Public Safety LTE & Mobile Broadband Market: 2016 – 2030 – Opportunities, Challenges, Strategies & Forecasts

This report package provides an in-depth assessment of LTE for critical communications and also explores the wider market for commercial LTE services. Besides analyzing technologies, architectural components, operational models, key trends, market drivers, challenges, vertical market opportunities, applications, deployment case studies, spectrum allocation, standardization, regulatory landscape, future roadmap, value chain, ecosystem player profiles and strategies, the report package also provides infrastructure investment forecasts from 2016 till 2030.

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

Topics Covered:

The report package covers the following topics:

Commercial LTE Networks

- LTE/LTE-Advanced technology and market status
- 5G technology and R&D commitments
- Market drivers and barriers
- TCO comparison with legacy technologies
- LTE/5G infrastructure, devices, subscriptions and service revenue
- Infrastructure and device vendor share
- Antenna systems, RAN, mobile core, backhaul and fronthaul deployment strategies
- Mobile operator reviews, service models, pricing strategies and LTE/5G deployment case studies
- Unlicensed LTE, VoLTE, RCS, eMBMS and M2M services
- Industry roadmap and value chain
- Profiles and strategies of over 90 ecosystem players including infrastructure OEMs, device OEMs and mobile operators
- Market analysis and forecasts from 2016 till 2030

Dedicated LTE Networks for Critical Communications

- Critical communications LTE ecosystem
- Market drivers and barriers
- Technology, architectural components and operational models
- Analysis of vertical markets, applications and key trends
- Case studies of over 20 critical communications LTE network deployments
- Review of spectrum allocation for critical communications LTE networks
- Regulatory landscape and standardization
- Industry roadmap and value chain
- Profiles and strategies of over 200 ecosystem players including infrastructure OEMs, device OEMs and system integrators
- Strategic recommendations for enterprises, public safety agencies, LTE infrastructure OEMs, system integrators and mobile operators
- Market analysis and forecasts from 2016 till 2030

Key Questions Answered:

The report package provides answers to the following key questions:

- How big is the critical communications LTE opportunity?
- How big is the wider market for LTE, LTE-Advanced and 5G networks?
- 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 does standardization impact the adoption of LTE for critical communications?
- When will MCPTT (Mission-Critical Push-to-Talk) and proximity services see large-scale proliferation?
- What opportunities exist for commercial mobile operators and MVNOs in the critical communications market?
- Will LTE replace GSM-R and other legacy technologies for railway communications and applications?
- Which spectrum band will be the most dominant choice for critical communications LTE network deployments?
- Is there a market for 400 MHz LTE networks?
- What are the prospects of tactical, vehicle-mounted and airborne LTE eNB platforms?
- How can public safety agencies leverage unused spectrum resources to fund private LTE networks?
- Who are the key market players and what are their strategies?
- What strategies should system integrators and vendors adopt to remain competitive?

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/lte-for-critical-communications-2016-2030-opportunities-challenges-strategies-forecasts-report.html/toc

List of Companies Mentioned

- 3GPP (3rd Generation Partnership Project)
- 5G-PPP
- Aaeon
- Abu Dhabi Police
- Accelerated Concepts
- Accelleran
- AceAxis
- ACMA (Australian Communications and Media Authority)
- Aculab
- Adax
- ADCOM911 (Adams County Communications Center)
- Addis Ababa Light Rail
- ADRF (Advanced RF Technologies)
- Advantech
- Advantech Wireless
- Aeroflex
- Affarii Technologies
- Affirmed Networks
- Agile Networks
- Airbus Defence and Space
- Airbus Group
- Air-Lynx
- Airspan Networks
- Airvana
- Airwave Solutions
- Ajman Police
- Alcatel-Lucent
- Alstom
- Altiostar Networks
- Ambulance Victoria
- Amdocs
- Anite
- Anritsu Corporation
- Ansaldo STS
- APCO International (Association of Public-Safety Communications Officials)
- Apple
- ARASKOM
- Arcadyan Technology Corporation
- Argela
- Aricent
- ARItel
- Arqiva
- Artemis Networks
- Aselsan
- ASOCS
- ASTRI (Hong Kong Applied Science and Technology Research Institute)
- ASTRID
- ASTRO Solutions
- ASUS (ASUSTeK Computer)
- AT&T
- AT&T Mobility
- Athena Wireless Communications
- Athonet
- ATIS (Alliance for Telecommunications Industry Solutions)
- Atlas Telecom
- Avanti Communications Group
- Avaya
- AVI
- Aviat Networks
- Avtec
- Axell Wireless
- Axis Communications
- Axis Teknologies
- Axxcelera Broadband Wireless
- BAE Systems
- BaiCells
- BandRich
- Barrett Communications
- BASE (Belgium)
- Baylin Technologies
- BayRICS (Bay Area Regional Interoperable Communications Systems Authority)
- BayWEB (Bay Area Wireless Enhanced Broadband System)
- BBK Electronics Corporation
- Beach Energy
- Belkin International
- BFDX
- Bilbao Metro
- Bird Technologies
- Bittium Corporation
- Black Box Corporation
- BlackBerry
- Blackhawk Imaging
- Blackned
- Bluebird
- Boise Police Department
- Bombardier Transportation
- Bosch Security Systems
- Brazilian Army
- Bridgewater
- Broadcom
- Brocade Communications Systems
- BT Group
- BTI Wireless
- Busan Transportation Corporation
- C4i
- CalAmp Corporation
- Calgary Police Service
- Camden County Public Safety
- Canadian Advanced Technology Alliance
- Casa Systems
- Casio Computer Company
- Catalyst Communications
- Caterpillar
- Cavium
- CCI (Communication Components Inc.)
- CCI (Competitive Companies, Inc.)
- CCI (Crown Castle International)
- CCSA (China Communications Standards Association)
- CCTI (Catalyst Communications Technologies, Inc.)
- Cellvine
- Ceragon
- Challenge Networks
- China Mobile
- China Southern Power Grid
- Ciena Corporation
- Cisco Systems
- CITIG (Canadian Interoperability Technology Interest Group)
- City of Charlotte
- City of Fort Worth
- City of Irving
- City of New Orleans
- City of Oakland
- City of Pembroke Pine
- Cobham
- Cobham Wireless
- Codan Radio Communications
- Colorado Parks and Wildlife
- Comba Telecom Systems Holdings
- CommAgility
- CommandWear Systems
- CommScope
- Comtech Telecommunications Corporation
- CONET Technologies
- Connectem
- Contela
- Coolpad
- Core Network Dynamics
- Coriant
- Corning
- County of Los Angeles
- Covia Labs
- CPqD (Center for Research and Development in Telecommunications, Brazil)
- Cradlepoint
- Crown Castle
- CSI (Cellular Specialties, Inc.)
- Cybertel Bridge
- Cygnus Satellite
- Dali Wireless
- DAMM Cellular Systems
- DAP Technologies
- DAPage Notifications
- DataNet Software
- Datang Group
- Datang Mobile
- Dell
- DeltaNode
- Dish Network
- D-Link Corporation
- DNK (Norwegian Directorate for Emergency Communication)
- Dongwon T&I
- Dovado
- DragonWave
- DSC (Digital Special Communication)
- DT (Deutsche Telekom)
- Dubai Police
- Durabook (Twinhead International Corporation)
- Dutch Police
- EA Networks (Electricity Ashburton)
- EADS
- Eastcom
- EchoStar Corporation
- Eden Rock Communications
- EE
- EENA (European Emergency Number Association)
- EF Johnson
- Elbit Systems
- Elta Systems
- EMC Corporation
- Ericsson
- Ericsson LG
- Esharah Etisalat Security Solutions
- ETELM
- Etherstack
- Ethertronics
- Etisalat
- ETRI (Electronics and Telecommunications Research Institute, South Korea)
- ETSI (European Telecommunications Standards Institute)
- EUAR (European Union Agency for Railways)
- Eventide
- EXACOM
- Exalt Communications
- Exelis
- EXFO
- Expway
- ExteNet Systems
- Facebook
- Falu Municipality
- Federated Wireless
- FirstNet (First Responder Network Authority)
- Foxcom
- Fraunhofer Fokus
- French Army
- French MOI (Ministry of Interior)
- Frequentis
- Fujitsu
- Galtronics Corporation
- Gemtek Technology Company
- GENBAND
- General Dynamics Corporation
- General Dynamics Mission Systems
- Genesis Group
- German Armed Forces (Bundeswehr)
- Getac Technology Corporation
- Gionee
- Goodman Networks
- Goodmill Systems
- Google
- Governor's OIT (Office of Information Technology), State of Colorado
- Grant County Sheriff’s Office
- GrenTech (China GrenTech Corporation)
- GWT (Global Wireless Technologies)
- Harris Corporation
- Harris County
- HFRS (Hampshire Fire & Rescue Service)
- Hitachi
- Home Office, UK
- Honeywell
- Hong Kong Police Force
- HPE (Hewlett Packard Enterprise)
- HQT Radio
- HTC Corporation
- Huawei
- Hughes Communications
- Hughes Network Systems
- Hytera Communications Company
- IAI (Israel Aerospace Industries)
- iBwave Solutions
- iCOM
- IDF (Israel Defense Forces)
- IETF (Internet Engineering Task Force)
- Imtradex
- INET (Infrastructure Networks)
- InfoVista
- Inmarsat
- InnerWireless
- Intel Corporation
- Intel Security
- InterDigital
- Intersec
- Intrepid Networks
- ip.access
- IPWireless
- ITELAZPI
- ITU (International Telecommunication Union)
- ITU-R (ITU Radiocommunication Sector)
- JDI (JING DENG INDUSTRIAL)
- JMA Wireless
- Jordanian Armed Forces
- JRC (Japan Radio Company)
- Juni Global
- Juniper Networks
- JVCKENWOOD Corporation
- Kapsch CarrierCom
- Kathrein-Werke KG
- KBR
- KDDI Corporation
- Kelrad Software
- Kenyan Police Service
- Keysight Technologies
- Kirisun Communications
- Kisan Telecom
- KMW
- Kodiak Networks
- Koning & Hartman
- Korail (Korea Railroad)
- Korea Rail Network Authority
- KPN
- KT Corporation
- Kudelski Group
- Kumu Networks
- Kyocera Corporation
- L-3 Communication Systems-West
- L-3 Communications Holdings
- Laos Police
- LA-RICS (Los Angeles Regional Interoperable Communications System)
- Las Vegas Metropolitan Police Department
- Lemko Corporation
- Lenovo
- Leonardo-Finmeccanica
- LG CNS
- LG Electronics
- LG Group
- LG Uplus
- LGS Innovations
- Ligado Networks
- Lijiang Police
- Linksys
- LiveViewGPS
- Lockheed Martin Corporation
- Logic Instrument
- LTE-U Forum
- Luminate Wireless
- M1
- Marlink
- Mavenir Systems
- McWane
- MediaTek
- MegaFon
- Meizu
- Mentura Group
- MER-CellO Wireless Solutions
- MetroPCS
- Miami Dade Police Department
- Miami-Dade County
- Microlab
- Microsoft Corporation
- Milestone Systems
- MIMOon
- Ministry of Industry and Information Technology, China
- Mitel Networks Corporation
- Mitsubishi Electric Corporation
- MobileDemand
- Mobilicom
- Mobistar
- MODUCOM (MODULAR COMMUNICATION SYSTEMS)
- MOF (Ministry of Oceans and Fisheries, South Korea)
- MOLIT (Ministry of Land, Infrastructure and Transport, South Korea)
- Moscow Police
- Moseley Associates
- Motorola Mobility
- Motorola Solutions
- MPS (Ministry of Public Security, China)
- MPSS (Ministry of Public Safety and Security, South Korea)
- MSB (Swedish Civil Contingencies Agency)
- MTI Mobile
- MulteFire Alliance
- Mutualink
- Nanjing Municipal Government
- National Rail, UK
- NATO (North Atlantic Treaty Organization)
- NCRIC (Northern California Regional Information Center)
- NEC Corporation
- NEC Mobile Communications
- Nedaa
- Nemergent
- Neptune Mobile
- Net4Mobility
- Netas
- Netgear
- NetMotion Wireless
- Nevada Department of Transportation
- New Jersey ROIC (Regional Operations Intelligence Center)
- New Jersey State Police
- New Jersey Transit
- New Mexico DoIT (Department of Information Technology)
- New Postcom Equipment Company
- New Zealand Police
- NewCore Wireless
- Nexius
- NextG Networks
- NextNav
- NI (National Instruments) Corporation
- Nokia Corporation
- Nokia Networks
- Northrop Grumman Corporation
- Novatel Wireless
- nTerop Corporation
- NTT DoCoMo
- NuRAN Wireless
- Nutaq
- O3b Networks
- Oceus Networks
- Octasic
- OMA (Open Mobile Alliance)
- Oman Royal Office
- Ontario Ministry of Transportation
- ONTHEGODEVICES
- OpenSignal
- OPPO
- Optiway
- Orange
- Panasonic Corporation
- Panda Electronics (Nanjing Panda Electronics Company)
- Panorama Antennas
- Pantech
- Parallel Wireless
- Pennsylvania State Police
- Pepro
- PetroChina
- Philadelphia Police Department
- Phluido
- Phonak
- Piciorgros (Funk-Electronic Piciorgros)
- Pikewerks Corporation
- PMN (Private Mobile Networks)
- Polaris Networks
- Police Federation of Australia
- Port of Tianjin
- Portalify
- Potevio (China Potevio Company)
- PowerTrunk
- Productivity Commission, Australia
- Proximus
- Pryme Radio Products
- Public Wireless
- PureWave Networks
- Puxing Radio
- Pyramid Communications
- Qatar Armed Forces
- Qatar MOI (Ministry of Interior)
- Qigihar Municipal Public Security Bureau
- Qiqihar Police
- Qualcomm
- Quanta Computer
- Qucell
- Queensland Police Service
- Quortus
- RACOM
- Radio IP
- Radisys Corporation
- RADWIN
- RAVEN Electronics Corporation
- Raytheon Company
- RCMP (Royal Canadian Mounted Police)
- Reality Mobile
- Redline Communications
- RELM Wireless
- RF Window
- RFS (Radio Frequency Systems)
- Rio de Janeiro Fire Department
- Rio Tinto Group
- Rivada Networks
- Rohde & Schwarz
- Rohill
- Roper Industries
- Rosenberger
- Royal Dutch Shell
- Ruckus Wireless
- Safaricom
- SAIC (Science Applications International Corporation)
- Samji Electronics Company
- Samsung Electronics
- Samsung Group
- SANG (Saudi Arabian National Guard)
- Sao Paulo Military Police
- Sapura Secured Technologies
- Saudi MOI (Ministry of Interior)
- Savox Communications
- Selex
- Sepura
- SerComm Corporation
- SES
- SETAR
- Sevis Systems
- SFR
- Shanghai Police Department
- Sharp Corporation
- Shuohuang Railway
- Siemens
- Siemens Convergence Creators
- Sierra Wireless
- Signalion
- Siklu
- Simoco
- Singtel
- SiRRAN
- SK Telecom
- SK Telesys
- SLA Corporation
- SLC (Secure Land Communications)
- Smith Micro Software
- SoftBank Group
- SOLiD (SOLiD Technologies)
- Sonic Communications
- Sonim Technologies
- Sony Corporation
- Sony Mobile Communications
- Southern Company
- SouthernLINC Wireless
- Space Data
- Spectra Group
- SpiderCloud Wireless
- Spirent Communications
- Spreadtrum
- Sprint Corporation
- Star Solutions
- State of Louisiana
- State of Minnesota
- State of Mississippi
- State of New Jersey
- State of New Mexico
- State of Oklahoma
- State of Texas
- State Security Networks Group, Finland
- Statoil
- STC (Saudi Telecom Company)
- Stop Noise
- Sumitomo Electric Industries
- Sunnada (Fujian Sunnada Communication Company)
- Surrey Police
- Swedish National Police
- Symantec
- Tait Communications
- Tampnet
- Taqua
- TCCA (TETRA and Critical Communications Association)
- TCL Communication
- TCS (TeleCommunication Systems)
- TDIA (TD-Industry Alliance)
- TE Connectivity
- Techosonic Industries
- Tecom
- Tecore
- TEKTELIC Communications
- Telefónica
- Telenor Maritime
- Televate
- TELEX
- Telrad Networks
- Telstra
- Teltronic
- Telum
- Telus
- TEN (Texas Energy Network)
- TESSCO
- TETRAtab
- Thales
- TI (Texas Instruments)
- TIA (Telecommunications Industry Association)
- TITAN Communication Systems
- T-Mobile USA
- Toshiba Corporation
- Tropico
- TrustComm
- TTA (Telecommunications Technology Association, South Korea)
- Turk Telekom
- Turkish National Police Force
- Twisted Pair Solutions
- TxDPS (Texas Department of Public Safety)
- U.S. Army
- U.S. CBP (Customs and Border Protection)
- U.S. Cellular
- U.S. Coast Guard
- U.S. Department of Commerce
- U.S. Department of Defense
- U.S. Department of Homeland Security
- U.S. Department of State
- U.S. FCC (Federal Communications Commission)
- U.S. FEMA (Federal Emergency Management Agency)
- U.S. Navy
- U.S. NIST (National Institute of Standards and Technology)
- U.S. NPSTC (National Public Safety Telecommunications Council)
- U.S. NTIA (National Telecommunications and Information Administration)
- UAE MOI (Ministry of Interior)
- UANGEL
- Ubidyne
- UIC (International Union of Railways)
- UNIMO Technology
- University of Ottawa
- Uppsala Ambulance Services
- UQ Communications
- URSYS
- US Digital Designs
- USPTO (U.S. Patent and Trademark Office)
- Utility Associates
- Verizon Communications
- Verizon Wireless
- ViaSat
- Viavi Solutions
- Vidyo
- Vientiane Municipal Government
- Vientiane Municipal Police
- VIRVE
- Vision Technologies
- Vivo
- VMware
- Vodacom Group
- Vodafone Group
- Vodafone New Zealand
- Weijiamao Coal Mine
- West Corporation
- Westell Technologies
- Western Australia Police
- Wi-Fi Alliance
- Wildox
- Winmate
- WinMate Communication
- Wireless Telecom Group Company
- WNC (Wistron NeWeb Corporation)
- Wytec International
- xG Technology
- Xiaomi
- Xplore Technologies Corporation
- Z-com (ZDC Wireless)
- Zetel Solutions
- Zetron
- Zhengzhou Metro
- Zhengzhou Municipal Public Security Bureau
- Zhengzhou Police
- 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

Request Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=862759

Thursday, 3 May 2018

Small Cells Market 2018 Global Industry Attractiveness, Competitive Landscape and Forecasts 2024

Researchmoz added Most up-to-date research on "Small Cells: Market Shares, Strategy, and Forecasts, Worldwide, 2018 to 2024" to its huge collection of research reports.

The 2018 study has 248 pages, 135 tables and figures.  The leading vendors in the small cell market have invested in high-quality technology and processes to develop leading edge monitoring and digital triggering activation capability.

Small Cell markets encompass virtualization, cloud, edge, and functional splits.  5G requires increasing sophistication from mobile operators. The challenge is to bring together a growing number of LTE and 5G radio access technologies.   A range of connectivity services are needed.  Associated APIs are needed in each small cell to manage connectivity to a number of customer segments.  

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=1513127

Figure 1. Small Cell Market Driving Forces

- Need for enabling evolution of local communications network
- Availability of fully virtualized, distributed, ultra-reliable software
- Effective software for controlling agile infrastructure
- Automation facilitates large-scale low-cost network densification
- Lowers cost by implementing network through third-party deployments
- Effective integration of base small cell technologies
-  Systems integration achieved with open and interoperable standards
- Open and interoperable standards needed to ensure competition
- open and interoperable standards needed to ensure economies of scale
- Adoption of these 5G Era technologies will require culture shifts in processes

Small cells need infrastructure across a broad range of commercial and governmental organizations.  Each have a part to play in making small cells work along with tower infrastructure to create a broadband commercial network.  Service providers are focused on densification.  Small cells are a critical part of the infrastructure for several key 5G Era deployment scenarios:

Figure 2. Small Cell Infrastructure Critical Issues

- Service providers are focused on densification
- Small cells are a critical part of the infrastructure for key 5G implementations
- 5G deployment needs small cells
- >6GHz spectrum propagation limits cell sizes
- Shared and license-exempt spectrum mandates lower power
- Areas of hyper-dense broadband traffic need small cells
- Small cells meet demand in cities, stadia, transport hubs
- Scalable deployment
- Low-cost deployment
- Using a low-skilled, third-party, or end-user workforce
- Small/medium enterprises requiring self-deployed indoor coverage
- Coverage extension in rural, remote, moving and temporary deployment
- Scenarios with equipment size, weight or power constraints.

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/small-cells-market-shares-strategy-and-forecasts-worldwide-2018-to-2024-report.html/toc

The total value of the small cell market is $12.5 billion in 2017, up from $10.35 billion in 2016.  Markets grow to $58.7 billion in 2024.  Growth is a result of the implementation of the tremendous amount of digital content from video on smart phones, from the digital economy, IoT, robots, drones, self-driving cars, and artificial intelligence.  The digital economy rides on the back of small cells 5G signal transmission which is a 10x improvement in capacity over existing broadband.  This is the new world aspect, everything is monitored and activated digitally.

The digital economy, self-driving cars, drones, traffic lights, and smart things all need more wireless coverage.  According to Susan Eustis, leader of the team that prepared the research, “Small cell suppliers have a focus on broadband improvement.  Power and performance are being improved.  Small cells improve the transmission coverage and density.”

This 5G coverage is needed as IoT, the Internet of things and smart phone video increase transmission needs.  “Everything will be connected,” said SoftBank Chief Executive Masayoshi Son, announcing a ARM processor deal in London. “Cows will be connected, chickens will be connected, the sheep will be connected.”
WinterGreen Research is an independent research organization funded by the sale of market research studies all over the world and by the implementation of ROI models that are used to calculate the total cost of ownership of equipment, services, and software.  The company has 35 distributors worldwide, including Global Information Info Shop, Market Research.com, Research and Markets, electronics.ca, and Thompson Financial.  WinterGreen Research is positioned to help customers facing challenges that define the modern enterprises.

The increasingly global nature of science, technology and engineering is a reflection of the implementation of the globally integrated enterprise.  Customers trust wintergreen research to work alongside them to ensure the success of the participation in a particular market segment.

WinterGreen Research supports various market segment programs; provides trusted technical services to the marketing departments.  It carries out accurate market share and forecast analysis services for a range of commercial and government customers globally.  These are all vital market research support solutions requiring trust and integrity.

Companies Profiled

Market Leaders

- Ericsson
- Huawei
- Nokia / Alcatel-Lucent
- NEC
- ZTE
- Samsung
- Fujitsu

Market Participants

- Airspan
- ANs
- ADRF
- AT&T
- Ciena
- Cisco Small Cells
- CommScope
- Corning Spidercloud
- ip.access
- NTSI
- Optimos
- Qualcomm
- Signal Booster.com
- Small Cell Forum
- Solid Technologies
- Zouk Capital / ip.access

Make an Enquiry of this report @ https://www.researchmoz.us/enquiry.php?type=E&repid=1513127

Key Topics

- Small Cells
- Virtualization
- Cloud
- Edge
- Functional splits.
- LTE Small Cell
- 5G
- Network Densification
- Hybrid Ethernet Based DAS
- DAS
- In Building Wireless
- Broadband Traffic
- In Air Interface Solutions
- Outdoor and Stadium Deployments
- Heterogeneous Network
- Hung On Aerial Coax, Fiber, Or Electricity Cables
- Distributed business
- Enterprise
- End-To-End Integrated Small Cells
- Metro Cell Solution Signal Transmission
- ADRF Positioning
- Bandwidth Allocation
- Across enterprise boundaries

Friday, 6 April 2018

The LTE, LTE-Advanced & 5G Ecosystem: 2016 - 2030 - Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts - Researchmoz

Researchmoz added Most up-to-date research on "The LTE, LTE-Advanced & 5G Ecosystem: 2016 - 2030 - Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts" to its huge collection of research reports.

As a natural upgrade path for mobile operators from the previously detached GSM, CDMA and TD-SCDMA ecosystems, LTE has emerged as the first truly global mobile communications standard. Commonly marketed as the “4G” standard, LTE promises to provide higher data rates and lower latency at a much lower TCO (Total Cost of Ownership) than 3G technologies.

The TCO and performance is further enhanced by deployment of small cells and the LTE-Advanced standard, which improves performance and data rates using features such as the aggregation of carriers, interference management and advanced antenna techniques.

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=827473

With over 500 fully commercial network launches, LTE has become a mainstream technology, and a number of mobile operators have already deployed LTE-Advanced technology. SNS Research estimates that LTE service revenues will account for over $600 Billion in 2016. The figure is further expected to grow at a CAGR of more than 5% over the next four years.

While LTE and LTE-Advanced deployments are still underway, mobile operators and vendors have already embarked on R&D initiatives to develop so-called “5G” networks, with a vision of commercialization by 2020. 5G is essentially a revolutionary paradigm shift in wireless networking to support the throughput, latency, and scalability requirements of future use cases such as extreme bandwidth augmented reality applications and connectivity management for Billions of M2M (Machine to Machine) devices.

By 2020, LTE and 5G infrastructure investments are expected to account for a market worth $32 Billion. This includes spending on distributed macrocells, small cells, C-RAN architecture equipment and mobile core solutions.

The “LTE, LTE-Advanced & 5G Ecosystem: 2016 – 2030 – Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts” report presents an in-depth assessment of the LTE, LTE-Advanced and 5G ecosystem including key market drivers, challenges, technologies, service revenue potential, deployment strategies, vertical market opportunities, mobile operator case studies, R&D initiatives, future roadmap, value chain, vendor assessment and market share. The report also tracks revenue and shipments for both infrastructure and devices, along with subscription and service revenue from 2016 through to 2030.

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:

- LTE/LTE-Advanced technology and market status
- 5G technology and R&D commitments
- Market drivers and barriers
- TCO comparison with legacy technologies
- LTE/5G infrastructure, devices, subscriptions and service revenue
- Infrastructure and device vendor share
- Antenna systems, RAN, mobile core, backhaul and fronthaul deployment strategies
- Mobile operator reviews, service models, pricing strategies and LTE/5G deployment case studies
- Unlicensed LTE, VoLTE, RCS, eMBMS and M2M services
- Vertical markets for LTE/5G networks
- Industry roadmap and value chain
- Company profiles and strategies of over 90 ecosystem players including infrastructure  vendors, device OEMs and mobile operators
- Market analysis and forecasts from 2016 till 2030

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-lte-lteadvanced-5g-ecosystem-2016-2030-infrastructure-devices-operator-services-verticals-strategies-forecasts-report.html/toc

Forecast Segmentation

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

LTE/5G Infrastructure Shipments & Revenue

- Distributed Macrocell Base Stations
- Small Cells
- RRHs (Remote Radio Heads)
- C-RAN BBUs (Centralized RAN Baseband Units)
- Mobile Core

LTE/5G Device Shipments & Revenue

- Handsets
- Tablets
- Embedded M2M Modules
- USB Dongles
- Routers

LTE/5G Subscriptions and Service Revenue

- FDD LTE
- TD-LTE
- 5G

Private LTE/5G Infrastructure Revenue

- Public Safety
- Military
- Energy & Utilities
- Transportation
- Mining & Others

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 LTE, LTE-Advanced and 5G ecosystem?
- How is the ecosystem evolving by segment and region?
- What will the market size be in 2020 and at what rate will it grow?
- What trends, challenges and barriers are influencing its growth?
- Who are the key infrastructure and device vendors, and what are their strategies?
- How will FDD LTE investments compare with TD-LTE?
- What is the outlook for LTE-Advanced adoption?
- What are the future prospects for unlicensed LTE, VoLTE and eMBMS services?
- Will future network rollouts adopt a C-RAN architecture?
- How will NFV and virtualization affect the EPC market?
- What opportunities exist for small cells and how will their proliferation impact the wider LTE/5G infrastructure market?
- How much are vendors and operators investing in 5G R&D efforts?
- What will be the number of 5G subscriptions in 2020 and at what rate will it grow?
- What are the prospects of millimeter wave technology for 5G radio access networking?

Make an Enquiry of this report @ https://www.researchmoz.us/enquiry.php?type=E&repid=827473

Key Findings

The report has the following key findings:

- In 2016, mobile operators will pocket over $600 Billion from commercial LTE service revenues. The figure is further expected to grow at a CAGR of more than 5% over the next four years.
- More than 150 LTE operators have already deployed carrier aggregation technology. By 2020, over 50% of all LTE subscribers will be supported by LTE-Advanced networks.
- Mobile operators are pursuing a range of technologies including unlicensed LTE (LTE-U, LAA, LWA, MulteFire), VoLTE and eMBMS, as they seek to maximize the value of their LTE investments while addressing mobile data traffic growth.
- Although 5G is yet to be standardized, vendors are aggressively investing in 5G development efforts with a principal focus on new air interface transmission schemes, higher frequency bands and advanced antenna technologies such as Massive MIMO and beamforming.
- By 2020, LTE and 5G infrastructure investments are expected to account for a market worth $32 Billion. This includes spending on distributed macrocells, small cells, C-RAN architecture equipment and mobile core solutions."

Thursday, 1 March 2018

Private LTE Network Ecosystem Market 2016 Opportunities, Challenges, Strategies, Industry Verticals & Forecasts 2030

Researchmoz added Most up-to-date research on "The Private LTE Network Ecosystem: 2016 - 2030 - Opportunities, Challenges, Strategies, Industry Verticals & Forecasts" to its huge collection of research reports.

For years, the critical communications industry has relied on narrowband LMR (Land Mobile Radio) networks for mission-critical voice and basic data services. Due to the bandwidth limitations of these LMR networks, public safety agencies and other users within the critical communications industry have turned towards commercial LTE networks to support growing demands for mobile broadband services such as video transmission and bandwidth-intensive field applications.

However, most commercial LTE networks do not necessarily meet the priority, security, resilience and availability requirements of the critical communications industry. By providing authority over coverage and capacity, private LTE networks can alleviate these concerns while delivering guaranteed connectivity.

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=804866

Expected to surpass $800 Million in global investments by the end of 2016, private LTE networks are increasingly becoming the preferred approach to deliver mobile broadband services in the critical communications industry. Fueled by large-scale rollouts in the public safety, energy and other sectors, the market is further expected to grow at a CAGR of 32% between 2016 and 2020.

The “Private LTE Network Ecosystem: 2016 – 2030 – Opportunities, Challenges, Strategies, Industry Verticals & Forecasts” report presents an in-depth assessment of the private LTE network ecosystem including technology, architectural components, operational models, key trends, market drivers, challenges, vertical market opportunities, applications, deployment case studies, spectrum allocation, standardization, regulatory landscape, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for private LTE network infrastructure investments from 2016 till 2030. The forecasts cover 3 submarkets, 5 vertical markets 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:

- Private LTE network ecosystem
- Market drivers and barriers
- Technology, architectural components and operational models
- Analysis of vertical markets, applications and key trends
- Case studies of 20 private LTE network deployments
- Review of spectrum allocation for private LTE networks
- Regulatory landscape and standardization
- Industry roadmap and value chain
- Profiles and strategies of 190 ecosystem players including LTE infrastructure OEMs and system integrators
- Strategic recommendations for enterprises, LTE infrastructure OEMs, system integrators and mobile operators
- Market analysis and forecasts from 2016 till 2030

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-private-lte-network-ecosystem-2016-2030-opportunities-challenges-strategies-industry-verticals-forecasts-report.html/toc

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

Submarkets

- RAN (Radio Access Network)
- EPC (Evolved Packet Core) & Policy
- Mobile Backhaul & Transport

Vertical Markets

- Public Safety
- Military
- Energy & Utilities
- Transportation
- 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 private LTE network 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 does standardization impact the adoption of LTE for critical communications?
- When will MCPTT (Mission-Critical Push-to-Talk) and proximity services see large-scale proliferation?
- What opportunities exist for commercial mobile operators in the private LTE network ecosystem?
- Will LTE replace GSM-R and other legacy technologies for railway communications and applications?
- Which spectrum band will be the most dominant choice for private LTE network deployments?
- What are the prospects of rapidly deployable tactical LTE networks in the military and public safety sectors?
- Who are the key market players and what are their strategies?
- What strategies should system integrators and vendors adopt to remain competitive?

Make an Enquiry of this report @ https://www.researchmoz.us/enquiry.php?type=E&repid=804866

Key Findings

The report has the following key findings:

- Expected to surpass $800 Million in global investments by the end of 2016, private LTE networks are increasingly becoming the preferred approach to deliver mobile broadband services in the critical communications industry. Fueled by large-scale rollouts in the public safety, energy and other sectors, the market is further expected to grow at a CAGR of 32% between 2016 and 2020.
- By the end of 2020, the North America region will account for over 35% of all private LTE investments worldwide. However, largely driven by South Korea’s rollout plans for public safety, railway and maritime LTE networks, the Asia Pacific region will continue to retain a strong position in the market.
- Several companies, such as TEN (Texas Energy Network) and INET (Infrastructure Networks) in the United States, have strategically deployed private LTE networks in remote, oil-rich areas, to exclusively provide mobile broadband services to energy companies.
- To alleviate large-scale infrastructure investments, several European countries are pairing dedicated private mobile core platforms with commercial LTE networks to deliver prioritized mobile broadband services to public safety subscribers.
- Conventional LMR industry players are leveraging partnerships with established LTE infrastructure OEMs such as Ericsson, Nokia, Huawei and Samsung, to offer end-to-end private LTE network solutions

Wednesday, 28 February 2018

LTE, LTE-Advanced & 5G Ecosystem Market Analysis 2016 Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts 2030

Researchmoz added Most up-to-date research on "The LTE, LTE-Advanced & 5G Ecosystem: 2016 - 2030 - Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts" to its huge collection of research reports.

As a natural upgrade path for mobile operators from the previously detached GSM, CDMA and TD-SCDMA ecosystems, LTE has emerged as the first truly global mobile communications standard. Commonly marketed as the “4G” standard, LTE promises to provide higher data rates and lower latency at a much lower TCO (Total Cost of Ownership) than 3G technologies.

The TCO and performance is further enhanced by deployment of small cells and the LTE-Advanced standard, which improves performance and data rates using features such as the aggregation of carriers, interference management and advanced antenna techniques.

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=827473

With over 500 fully commercial network launches, LTE has become a mainstream technology, and a number of mobile operators have already deployed LTE-Advanced technology. SNS Research estimates that LTE service revenues will account for over $600 Billion in 2016. The figure is further expected to grow at a CAGR of more than 5% over the next four years.

While LTE and LTE-Advanced deployments are still underway, mobile operators and vendors have already embarked on R&D initiatives to develop so-called “5G” networks, with a vision of commercialization by 2020. 5G is essentially a revolutionary paradigm shift in wireless networking to support the throughput, latency, and scalability requirements of future use cases such as extreme bandwidth augmented reality applications and connectivity management for Billions of M2M (Machine to Machine) devices.

By 2020, LTE and 5G infrastructure investments are expected to account for a market worth $32 Billion. This includes spending on distributed macrocells, small cells, C-RAN architecture equipment and mobile core solutions.

The “LTE, LTE-Advanced & 5G Ecosystem: 2016 – 2030 – Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts” report presents an in-depth assessment of the LTE, LTE-Advanced and 5G ecosystem including key market drivers, challenges, technologies, service revenue potential, deployment strategies, vertical market opportunities, mobile operator case studies, R&D initiatives, future roadmap, value chain, vendor assessment and market share. The report also tracks revenue and shipments for both infrastructure and devices, along with subscription and service revenue from 2016 through to 2030.

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:

- LTE/LTE-Advanced technology and market status
- 5G technology and R&D commitments
- Market drivers and barriers
- TCO comparison with legacy technologies
- LTE/5G infrastructure, devices, subscriptions and service revenue
- Infrastructure and device vendor share
- Antenna systems, RAN, mobile core, backhaul and fronthaul deployment strategies
- Mobile operator reviews, service models, pricing strategies and LTE/5G deployment case studies
- Unlicensed LTE, VoLTE, RCS, eMBMS and M2M services
- Vertical markets for LTE/5G networks
- Industry roadmap and value chain
- Company profiles and strategies of over 90 ecosystem players including infrastructure  vendors, device OEMs and mobile operators
- Market analysis and forecasts from 2016 till 2030

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-lte-lteadvanced-5g-ecosystem-2016-2030-infrastructure-devices-operator-services-verticals-strategies-forecasts-report.html/toc

Forecast Segmentation

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

LTE/5G Infrastructure Shipments & Revenue

- Distributed Macrocell Base Stations
- Small Cells
- RRHs (Remote Radio Heads)
- C-RAN BBUs (Centralized RAN Baseband Units)
- Mobile Core

LTE/5G Device Shipments & Revenue

- Handsets
- Tablets
- Embedded M2M Modules
- USB Dongles
- Routers

LTE/5G Subscriptions and Service Revenue

- FDD LTE
- TD-LTE
- 5G

Private LTE/5G Infrastructure Revenue

- Public Safety
- Military
- Energy & Utilities
- Transportation
- Mining & Others

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 LTE, LTE-Advanced and 5G ecosystem?
- How is the ecosystem evolving by segment and region?
- What will the market size be in 2020 and at what rate will it grow?
- What trends, challenges and barriers are influencing its growth?
- Who are the key infrastructure and device vendors, and what are their strategies?
- How will FDD LTE investments compare with TD-LTE?
- What is the outlook for LTE-Advanced adoption?
- What are the future prospects for unlicensed LTE, VoLTE and eMBMS services?
- Will future network rollouts adopt a C-RAN architecture?
- How will NFV and virtualization affect the EPC market?
- What opportunities exist for small cells and how will their proliferation impact the wider LTE/5G infrastructure market?
- How much are vendors and operators investing in 5G R&D efforts?
- What will be the number of 5G subscriptions in 2020 and at what rate will it grow?
- What are the prospects of millimeter wave technology for 5G radio access networking?

Make an Enquiry of this report @ https://www.researchmoz.us/enquiry.php?type=E&repid=827473

Key Findings

The report has the following key findings:

- In 2016, mobile operators will pocket over $600 Billion from commercial LTE service revenues. The figure is further expected to grow at a CAGR of more than 5% over the next four years.
- More than 150 LTE operators have already deployed carrier aggregation technology. By 2020, over 50% of all LTE subscribers will be supported by LTE-Advanced networks.
- Mobile operators are pursuing a range of technologies including unlicensed LTE (LTE-U, LAA, LWA, MulteFire), VoLTE and eMBMS, as they seek to maximize the value of their LTE investments while addressing mobile data traffic growth.
- Although 5G is yet to be standardized, vendors are aggressively investing in 5G development efforts with a principal focus on new air interface transmission schemes, higher frequency bands and advanced antenna technologies such as Massive MIMO and beamforming.
- By 2020, LTE and 5G infrastructure investments are expected to account for a market worth $32 Billion. This includes spending on distributed macrocells, small cells, C-RAN architecture equipment and mobile core solutions."

VoLTE Service Revenue Will Grow At A CAGR Of 34% Between 2016 And 2020, Account For More Than $200 Billion

Researchmoz added Most up-to-date research on "The VoLTE (Voice over LTE) Ecosystem: 2016 - 2030 - Opportunities, Challenges, Strategies & Forecasts" to its huge collection of research reports.

VoLTE (Voice over LTE) technology allows a voice call to be placed over an LTE network, enabling mobile operators to reduce reliance on legacy circuit-switched networks.  Powered by IMS (IP Multimedia Subsystem) architecture, VoLTE brings a host of benefits to operators ranging from the ability to refarm legacy 2G and 3G spectrum to offering their subscribers a differentiated service experience through capabilities such as HD voice and video telephony.

First deployed by South Korean operators in 2012, VoLTE is beginning to gain momentum globally. As of Q4’2016, more than 80 mobile operators have commercially launched VoLTE services, and several roaming and interoperability agreements are already in place.

To Get Sample Copy of Report visit @ https://www.researchmoz.us/enquiry.php?type=S&repid=846798

SNS Research estimates that VoLTE service revenue will grow at a CAGR of 34% between 2016 and 2020. By the end of 2020, VoLTE subscribers will account for more than $200 Billion in revenue. Although traditional voice services will constitute a major proportion of this figure, nearly 15% of the revenue will be driven by video calling and supplementary services.

The “VoLTE (Voice over LTE) Ecosystem: 2016 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the VoLTE ecosystem including enabling technologies, key market drivers, challenges, collaborative initiatives, regulatory landscape, standardization, opportunities, operator case studies, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for VoLTE smartphone shipments, subscriptions, service revenue and infrastructure investments from 2016 till 2030. The forecasts cover 7 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:

- VoLTE ecosystem
- Market drivers and barriers
- VoLTE infrastructure, devices, roaming and interconnection technology
- Case studies of 20 commercial VoLTE deployments
- OTT mobile voice and video services
- Complimentary technologies including Wi-Fi calling, RCS and WebRTC
- MCPTT (Mission Critical Push-to-Talk) voice services
- VoLTE services over MVNO networks
- Service assurance platforms for VoLTE
- Regulatory landscape, collaborative initiatives and standardization
- Industry roadmap and value chain
- Profiles and strategies of 100 leading ecosystem players including device OEMs, VoLTE solution providers and mobile operators
- Strategic recommendations for VoLTE solution providers and mobile operators
- Market analysis and forecasts from 2016 till 2030

Get Complete TOC With Tables and Figures @ https://www.researchmoz.us/the-volte-voice-over-lte-ecosystem-2016-2030-opportunities-challenges-strategies-forecasts-report.html/toc

Forecast Segmentation

VoLTE subscription, service revenue and infrastructure revenue forecasts are provided for each of the following submarkets and their subcategories:

VoLTE Services

- Voice Telephony
- Video and Supplementary Services

VoLTE Infrastructure

- CSCF (Call Session Control Function) Servers
- SBCs (Session Border Controllers)
- VoLTE Application Servers
- Other IMS Elements (HSS, BGCF, MGCF & MRF)
- VoLTE Capable PCRF (Policy & Charging Rules Function) Solutions

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 VoLTE 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 regions and countries will see the highest percentage of growth?
- How will VoLTE capable smartphone shipments grow over time?
- Who are the key market players and what are their strategies?
- How can VoLTE help operators in reducing the flow of voice subscribers to OTT application providers?
- What are the prospects of Wi-Fi calling, RCS and WebRTC?
- What much will operators invest in VoLTE service assurance solutions?
- How can mobile operators and MVNOs capitalize on VoLTE to drive revenue growth?
- How can VoLTE help operators in refarming their 2G and 3G spectrum assets?
- What is the status of international roaming and VoLTE-to-VoLTE interconnection agreements?
- What strategies should VoLTE solution providers and mobile operators adopt to remain competitive?

The report has the following key findings:

- By 2020, SNS Research estimates that VoLTE services will account for over $200 Billion in annual service revenue, as mobile operators remain committed to VoLTE as the long term solution to secure a fully native IP-based telephony experience.
- As the transition to VoLTE accelerates, mobile operators have already begun shutting down their legacy networks in a bid to reallocate additional spectrum to their LTE networks.
- Japan and South Korea have already shut down their 2G networks, and multiple operators in other parts of the world, including the United States, are in the processing of switching off 2G services. Some operators, such as Telenor Norway, are seeking the closure of their 3G networks as early as 2020.
- Nearly all VoLTE operators are integrating their VoLTE services with Wi-Fi calling in a bid to offer voice services in areas where their licensed spectrum coverage is limited.
- The vendor ecosystem is continuing to consolidate with several acquisitions such as Sonus Networks’ recent takeover of IP communications specialist Taqua.

Make an Enquiry of this report @ https://www.researchmoz.us/enquiry.php?type=E&repid=846798

List of Companies Mentioned

- 3GPP (3rd Generation Partnership Project)
- Accedian Networks
- Affirmed Networks
- Alcatel-Lucent
- ALEPO
- Altair Semiconductor
- Amdocs
- Anite
- Anritsu Corporation
- Apple
- Aptilo Networks
- Aricent
- Ascom
- Astellia
- Asus (ASUSTeK Computer)
- AT&T

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Blood Thawing System Market Insights Shared in Detailed Report

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