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LTE for Critical Communications Market 2016 - 2030 - Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts

LTE for Critical Communications Market 2016 - 2030 -

"The Report LTE for Critical Communications: 2016 - 2030 - Opportunities, Challenges, Strategies & Forecasts provides information on pricing, market analysis, shares, forecast, and company profiles for key industry participants. - MarketResearchReports.biz"

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.

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.

View Report @ https://www.marketresearchreports.biz/reports/862759/lte-for-critical-communications-2016-2030-opportunities-challenges-strategies-forecasts-market-research-reports

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.

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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?

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
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
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)
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
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
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
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
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)
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
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
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
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
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
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
Ecuador
Egypt
El Salvador
Equatorial Guinea
Eritrea
Estonia
Ethiopia
Faroe Islands
Federated States of Micronesia
Fiji
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
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

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