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Public Safety LTE & Mobile Broadband Market: 2012 – 2017

ReportBazzar has announced a new report titled “Public Safety LTE & Mobile Broadband Market: 2012 – 2017 “To their offerings.
Mac Peter | 09.09.2015
Considering its thriving ecosystem, spectrum flexibility and performance metrics, public safety organizations worldwide recognize LTE as the de-facto standard for mission critical mobile broadband communications. With spectrum already allocated, public safety agencies in the Middle East and the U.S have already begun to operate private LTE networks. Signals and Systems Telecom estimates that the installed base of private public safety LTE base stations (eNode Bs) will reach nearly 80,000 globally by the end of 2017, following a CAGR of nearly 80% between 2012 and 2017, and will serve more than 1 Million private public safety LTE subscribers worldwide. However it is important to note that the transition to LTE is one of the will be one of the most complex technical changes the public safety communications industry will ever witness and will present challenges in its own rights. Furthermore spectrum, regulatory and budgetary issues in certain regions such as Europe will delay large scale deployments. This report presents an in-depth assessment of the global public safety LTE market, besides considering the wider LMR and mobile broadband industries. In addition to covering the business case, the challenges, spectrum allocation strategies, the industry‘s roadmap, deployment case studies, vendor strategies, and the application ecosystem for public safety LTE, the report also presents comprehensive forecasts for mobile broadband, LMR and public safety LTE subscriptions from 2011 till 2017. Also covered are public safety LTE service revenues as well as device and infrastructure (eNodeB base stations) shipment and associated revenue forecasts. 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 26 global private public safety LTE network deployments (as of November 2012).

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Table of Content:
1 Chapter 1: Introduction
1.1 Executive Summary
1.2 Topics Covered
1.3 Key Questions Answered
1.4 Methodology
1.5 Target Audience
1.6 Companies Mentioned
2 Chapter 2: An Overview of the Public Safety Mobile Broadband Market
2.1 Narrowband Land Mobile Radio (LMR) Systems in Public Safety
2.1.1 LMR Market Size
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 LMR Systems will Continue to Support Mission-Critical Voice
2.4 Why use 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 Rising Ecosystem
2.5.4 OPEX Reduction
2.6 Public Safety LTE Technology & Architecture
2.6.1 LTE Radio Access Network (E-UTRAN)
2.6.2 TDD vs. FDD
2.6.3 User Equipment (UE) Categories
2.6.3.1 USB Data Cards
2.6.3.2 Vehicular Modems
2.6.3.3 Smartphones
2.6.3.4 Tablets
2.6.4 Public Safety LTE EPC
2.6.4.1 Serving Gateway (SGW)
2.6.4.2 Packet Data Network Gateway (PGW)
2.6.4.3 Mobility Management Entity (MME)
2.6.4.4 Home Subscriber Server (HSS)
2.6.4.5 Policy Charging and Rules Function (PCRF)
2.6.5 LMR Network Integration and Inter-Working
2.6.6 The Evolution to LTE-Advanced and its Implications for Public Safety
2.6.7 Support for Roaming in Public Safety LTE
2.6.8 Inter-System Roaming
2.6.9 Intra-System Roaming to Commercial Carriers
2.7 Public Safety LTE Deployment Models
2.7.1 Private Public Satiety LTE Network Deployments
2.7.2 Shared Commercial Public Safety LTE
2.7.3 Hosted Core Public Safety LTE Networks
2.8 Funding Models for Private Public Safety LTE Network Deployment
2.8.1 Built, Owned and Operated by Integrator/Vendor
2.8.2 Owned and Operated by the State Government
2.8.3 Local Agency Hosted Core
2.8.4 Multiple Networks
2.9 The Public Safety LTE Business Case
2.9.1 Higher throughput and Low Latency
2.9.2 Economic Feasibility
2.9.3 Bandwidth Flexibility
2.9.4 Spectral Efficiency
2.9.5 Regional Interoperability
2.9.6 Lack of Competition from Other Standards
2.9.7 Endorsement from the Public Safety Community
2.9.8 Commitments by Infrastructure and Device vendors
2.9.9 Quality of Service (QoS) & Priority Provisioning
2.10 Challenges to the Public Safety LTE Ecosystem
2.10.1 Spectrum Allocation
2.10.2 Interworking with LMR Networks
2.10.3 Budgetary Issues
2.10.4 Security Issues
2.10.5 Support for Mission-Critical Voice and Direct Mode-Operation
2.10.6 Smaller Coverage Footprint to Comparison to LMR Systems
2.10.7 Support for Group Communication (Multi-Casting) in Release 8
2.10.8 Lack of Specifications for Battery Life in Public Safety Scenarios
2.10.9 User Profiles to fit Public Safety Requirements


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