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Public Safety LTE & Mobile Broadband Market Analysis 2015 Opportunities, Challenges, Strategies & Forecasts 2030

(Wireless-NewsWire.Com, March 31, 2016 ) Due to the bandwidth limitations of their traditional voice-centric LMR (Land Mobile Radio) networks, public safety agencies are keen to leverage commercial cellular network technology to support their growing broadband application needs. Considering its thriving ecosystem, spectrum flexibility and performance metrics, LTE has emerged as the leading candidate for public safety mobile broadband networks.

Standardization efforts are still underway to enhance the LTE standard for public safety requirements, including MCPTT (Mission Critical PTT) functionality, group communications and proximity services. However, this has not deterred public safety agencies from early deployments of the technology, particularly in the Middle East and Asia Pacific regions. The Qatar MOI made headlines when it deployed a private 800 MHz LTE network to complement its existing TETRA network with broadband applications. Since then, several private LTE networks have sprung up across the globe. For example, the Lijiang Police in China is utilizing a 20 site private LTE network for video surveillance and related applications.

To Get Sample Copy of Report visit @ http://www.researchmoz.us/enquiry.php?type=S&repid=289838

While most initial public safety LTE investments were limited to small scale networks, South Korea’s nationwide public safety LTE rollout is expected to trigger significant large-scale investments throughout the globe. Several early adopter private LTE deployments are also underway in the United States, as part of the planned FirstNet nationwide network. Europe, on the other hand, is predominantly seeing growing adoption of security hardened MVNO services that utilize commercial LTE networks to provide broadband access for public safety subscribers. However, private LTE pilots are also underway in the region, including engagements with armed forces with a major focus on transportable base station form factors, such as CIAB (Cell-in-a-Box).

Driven by the thriving ecosystem, we expect public safety LTE infrastructure investments to grow at a CAGR of nearly 40% between 2015 and 2020. By the end of 2020, infrastructure investments which include base stations (eNBs), mobile core and mobile backhaul gear will account for over $2 Billion. The market for ruggedized public safety LTE devices will also witness significant growth, with an estimated 4 Million annual device shipments in 2020.

The “Public Safety LTE & Mobile Broadband Market: 2015 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the global public safety LTE market, besides touching upon the wider LMR and mobile broadband industries. In addition to covering the business case, challenges, technology, spectrum allocation, industry roadmap, deployment case studies, vendor products, strategies, standardization initiatives and applications ecosystem for public safety LTE, the report also presents comprehensive forecasts for mobile broadband, LMR and public safety LTE subscriptions from 2015 till 2030. Also covered are public safety LTE service revenues, over both private and commercial networks. In addition, the report presents revenue and unit shipment forecasts for public safety LTE devices and infrastructure.

The report comes with an associated XLS datasheet covering quantitative data from all figures presented within the report, as well as a list and associated details of over 60 global public safety LTE network commitments (as of Q2’2015)."

ADDITIONAL DETAILS

Topics Covered

The report covers the following topics:

Business case for public safety LTE and mobile broadband services, including key benefits and challenges
Technology, economics, trends, commercial commitments and deployment case studies
List of public safety LTE deployments worldwide
Public safety LTE infrastructure, devices and applications
Industry roadmap and standardization initiatives
Spectrum allocation, deployment models and funding strategies
Profiles and strategies of over 230 ecosystem players including public safety system integrators and LTE infrastructure/device OEMs
TCO analysis of private and commercial public safety LTE deployments
Military and tactical LTE deployments
Public safety LTE base station (eNB) form factor analysis
Exclusive interview transcripts from 6 key ecosystem players: Airbus Defence and Space, Airwave Solutions, CalAmp Corporation, Motorola Solutions, Oceus Networks and Star Solutions
Strategic recommendations for vendors, system integrators, public safety agencies and wireless carriers
Market analysis and forecasts from 2015 till 2030

Forecast Segmentation

Market forecasts and historical figures are provided for each of the following submarkets:

Public Safety LTE (Private) Infrastructure

Submarkets

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

RAN Base Station (eNB) Mobility Categories

Fixed Base Stations
Transportable Base Stations

RAN Base Station (eNB) Cell Size Categories

Macrocells
Small Cells

Browse Detail Report With TOC @ http://www.researchmoz.us/the-public-safety-lte-and-mobile-broadband-market-2015-2030-opportunities-challenges-strategies-and-forecasts-report.html

Transportable RAN Base Station (eNB) Form Factor Categories

CIAB (Cell-in-a-Box)
COW (Cell-on-Wheels)
Airborne Cells

Public Safety LTE Devices

Submarkets

Private LTE
Commercial LTE

Form Factor Categories

Smartphones & Handportable Terminals
Vehicle Mount Routers & Terminals
Tablets & Notebook PCs
USB Dongles & Others

Public Safety LTE Subscriptions & Service Revenue

Submarkets

Private LTE
Commercial LTE

Public Safety User Subscriptions over Private Mobile Broadband

Submarkets

Private LTE
Private WiMAX

Public Safety User Subscriptions over Commercial Mobile Broadband

Submarkets

CDMA2000/EV-DO
W-CDMA/HSPA
WiMAX
LTE
5G & Beyond

LMR Subscriptions

Submarkets

Analog
DMR
dPMR, NXDN & PDT
P25
TETRA
Tetrapol
Others

LMR Data Subscriptions

Submarkets

P25 - Phase 1
P25 - Phase 2
TETRA
TEDS
Tetrapol
Others

Public Safety LTE Applications

Submarkets

Video Applications
GIS, AVLS and Mapping
Mobile VPN Access & Security
CAD (Computer Aided Dispatching)
Remote Database Access
Telemetry and Remote Diagnostics
Bulk Multimedia/Data Transfers
PTT & Voice over LTE
Situational Awareness Applications

Regional Segmentation

The following regional markets are covered:

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 public safety LTE 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 countries and submarkets will see the highest percentage of growth?
How does standardization impact the adoption of LTE for public safety applications?
When will MCPTT and proximity services see large scale proliferation?
What is the status of private LTE rollouts and public safety MVNO offerings across the globe?
What opportunities exist for commercial wireless carriers and MVNOs in the public safety LTE market?
Is there a market for 400 MHz LTE networks?
What are the prospects of tactical, rapidly deployable and airborne LTE solutions?
How can public safety agencies leverage unused spectrum resources to fund private LTE networks?
What strategies should system integrators and vendors adopt to remain competitive?

Key Findings

The report has the following key findings:

We expect public safety LTE infrastructure investments to grow at a CAGR of nearly 40% between 2015 and 2020. By the end of 2020, infrastructure investments which include base stations (eNBs), mobile core and mobile backhaul gear will account for over $2 Billion
The market for ruggedized public safety LTE devices will witness similar growth, with an estimated 4 Million annual device shipments in 2020
By 2020, the installed base of private public safety LTE base stations (eNBs) will reach 150,000. By that time, transportable LTE solutions will account for close to 20% of all public safety LTE infrastructure investments
Commercial carriers and public safety MVNOs will pocket over $8 Billion in public safety LTE service revenue by the end of 2020, following growth at a CAGR of 50% between 2015 and 2020
Almost all major LMR industry players are leveraging partnerships with established LTE infrastructure vendors such as Nokia, Huawei, Ericsson and Alcatel-Lucent, to offer end-to-end LTE solutions
Consolidation efforts are continuing to take place throughout the industry, particularly among the largest LTE infrastructure vendors and public safety system integrators

Table of Contents

1 Chapter 1: Introduction
1.1 Executive Summary
1.2 Key Findings
1.3 Topics Covered
1.4 Forecast Segmentation
1.5 Key Questions Answered
1.6 Methodology
1.7 Target Audience
1.8 Companies Mentioned

2 Chapter 2: An Overview of the Public Safety Mobile Broadband Market
2.1 Narrowband LMR (Land Mobile Radio) Systems in Public Safety
2.1.1 LMR Market Size
2.1.1.1 Analog LMR
2.1.1.2 DMR
2.1.1.3 dPMR, NXDN & PDT
2.1.1.4 P25
2.1.1.5 TETRA
2.1.1.6 Tetrapol
2.1.1.7 Other LMR Technologies
2.1.2 The Perceived Role of Mobile Broadband in Public Safety Scenarios
2.1.3 The Limitations of LMR Data Capabilities
2.2 Mobile Broadband for Public Safety
2.2.1 Partnerships with Commercial Carriers
2.2.2 Private LTE and WiMAX Deployments
2.3 How big is the Mobile Broadband Market?
2.3.1 Will the Public Safety Segment Witness the Same Level of Growth as the Consumer Segment?
2.3.2 What are the Growth Drivers?
2.3.3 Will LMR Systems Continue to Support Mission-Critical Voice?
2.4 The Use of Commercial Mobile Broadband Technology for Public Safety
2.5 Why LTE?
2.5.1 Performance Metrics
2.5.2 Coexistence, Interoperability and Spectrum Flexibility
2.5.3 A Thriving Ecosystem
2.5.4 OPEX Reduction
2.6 Public Safety LTE Technology & Architecture
2.6.1 E-UTRAN – The LTE RAN (Radio Access Network)
2.6.2 TDD vs. FDD
2.6.3 UE (User Equipment)
2.6.3.1 Smartphones & Handportable Terminals
2.6.3.2 Vehicle Mount Routers & Terminals
2.6.3.3 Tablets & Notebook PCs
2.6.3.4 USB Dongles & Others
2.6.4 EPC (Evolved Packet Core) – The LTE Mobile Core
2.6.4.1 SGW (Serving Gateway)
2.6.4.2 PGW (Packet Data Network Gateway)
2.6.4.3 MME (Mobility Management Entity)
2.6.4.4 HSS (Home Subscriber Server)
2.6.4.5 PCRF (Policy Charging and Rules Function)
2.6.5 LMR Network Integration and Inter-Working
2.6.6 Support for Roaming in Public Safety LTE
2.6.7 Inter-System Roaming
2.6.8 Intra-System Roaming to Commercial Carriers
2.7 LTE-Advanced & 5G: Implications for Public Safety
2.7.1 The Move Towards LTE-Advanced Networks
2.7.2 Impact on Public Safety LTE Rollouts
2.7.3 5G Requirements: Looking Towards the Future
2.8 Public Safety LTE Deployment Models
2.8.1 Private Public Safety LTE
2.8.2 Shared Commercial Public Safety LTE: Private-Public Partnerships
2.8.3 Public Safety LTE Access over Commercial Networks
2.8.4 Hosted Core Public Safety LTE Networks
2.9 Funding Models for Private Public Safety LTE Network Deployment
2.9.1 BOO (Built, Owned and Operated) by Integrator/Vendor
2.9.2 Owned and Operated by the Government Authority
2.9.3 Local Agency Hosted Core
2.9.4 Multiple Networks
2.10 The Public Safety LTE Business Case
2.10.1 Higher Throughput and Low Latency
2.10.2 Economic Feasibility
2.10.3 Bandwidth Flexibility
2.10.4 Spectral Efficiency
2.10.5 Regional Interoperability
2.10.6 Lack of Competition from Other Standards
2.10.7 Endorsement from the Public Safety Community
2.10.8 Commitments by Infrastructure and Device Vendors
2.10.9 QoS & Priority Provisioning
2.10.10 Support for Group Voice & Multimedia Communication
2.11 Challenges to the Public Safety LTE Ecosystem
2.11.1 Spectrum Allocation
2.11.2 Interworking with LMR Networks & Standardization
2.11.3 Budgetary Issues
2.11.4 Security & Resilience
2.11.5 Support for Mission-Critical Voice and Direct Mode-Operation
2.11.6 Smaller Coverage Footprint than LMR Systems
2.11.7 Device Battery Life in Public Safety Scenarios
2.11.8 User Profiles to Fit Public Safety Requirements

3 Chapter 3: Public Safety LTE and Mobile Broadband Industry Roadmap
3.1 Industry Roadmap
3.2 2011 – 2014: Initial Private LTE Rollouts
3.3 2015 – 2019: Early Nationwide Rollouts
3.4 2020 & Beyond: Large Scale Proliferation
3.5 Public Safety LTE Deployment Case Studies
3.5.1 MPSS (Ministry of Public Safety and Security), South Korea
3.5.2 Zhengzhou Metro
3.5.3 Harris County
3.5.4 JerseyNet
3.5.5 Qatar MOI
3.5.6 Turkish National Police Force
3.5.7 Hong Kong Police Force
3.5.8 Lijiang Police
3.5.9 German Armed Forces
3.5.10 Kenyan Police Service

4 Chapter 4: Public Safety LTE and Mobile Broadband Applications Ecosystem
4.1 Mobile Video
4.2 Mobile Broadband and Seamless Mobile VPN Access
4.3 GIS, AVLS and Mapping
4.4 CAD (Computer Aided Dispatching)
4.5 Remote Database Access
4.6 Telemetry and Remote Diagnostics
4.7 Bulk Multimedia/Data Transfers
4.8 Situational Awareness Applications
4.9 PTT over LTE
4.10 The Present State of the Market: What’s on Offer
4.11 The Numbers: How big is thef Public Safety LTE Applications Ecosystem?

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