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. 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.
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.
Companies Profiles are:3GPP (3rd Generation Partnership Project), 5G-PPP, Accelerated Concepts, AceAxis, Air-Lynx, Airspan Networks, Atlas Telecom, Avanti Communications Group, BFDX, Bilbao Metro, Bird Technologies, Bittium Corporation, BlackBerry, CCI (Communication Components Inc.), CCI (Competitive Companies, Inc.), CCI (Crown Castle International), China Mobile, China Southern Power Grid, Ciena Corporation, CommScope, Comtech Telecommunications Corporation, Dubai Police, Durabook (Twinhead International Corporation), Dutch Police, ETELM, Etherstack, ExteNet Systems, Facebook, Foxcom, Fraunhofer Fokus, GioneeGoogle, Grant County Sheriff’s Office, Harris Corporation, Harris County, HFRS (Hampshire Fire & Rescue Service), InfoVista, Intel Security, InterDigital, Intersec, Kodiak Networks, Korail (Korea Railroad), Kudelski Group and more.
Table of Content:
Report 1 The LTE, LTE-Advanced & 5G Ecosystem: 2016 – 2030 – Infrastructure, Devices, Operator Services, Verticals, Strategies & Forecasts1.1 Chapter 1.1: Introduction 1.24
1.2 Chapter 1.2: LTE & LTE-Advanced Ecosystem 1.36
1.3 Chapter 1.3: LTE & LTE-Advanced Deployment Strategies 1.55
Report 2 The Private LTE Network Ecosystem: 2016 – 2030 – Opportunities, Challenges, Strategies, Industry Verticals & Forecasts2.1 Chapter 2.1: Introduction 2.18
2.2 Chapter 2.2: An Overview of Private LTE Networks 2.30
2.3 Chapter 2.3: Key Vertical Markets & Case Studies 2.60
2.4 Chapter 2.4: Spectrum Allocation, Standardization & Regulatory Initiatives 2.91
Report 3 The Public Safety LTE & Mobile Broadband Market: 2016 – 2030 – Opportunities, Challenges, Strategies & Forecasts
3.1 Chapter 3.1: Introduction 3.24
3.2 Chapter 3.2: An Overview of the Public Safety Mobile Broadband Market 3.39
3.3 Chapter 3.3: Industry Roadmap & Value Chain 3.74
3.4 Chapter 3.4: Review of Major Public Safety LTE Engagements 3.81
List of Figures
Figure 1.1: LTE Architecture
Figure 1.2: E-UTRAN Architecture
Figure 1.3: EPC Architecture
Figure 1.4: Functional Split between E-UTRAN and the EPC
Figure 1.5: Annual Throughput of Mobile Network Data Traffic by Region: 2016 - 2030 (Exabytes)
Figure 1.7: Mobile Network Service Revenue by Region: 2016 - 2030 ($ Billion)
Figure 1.8: TCO Comparison for 2G, 3G, LTE and HetNet Deployments ($ per GB)
Figure 1.8: RRH & FTTA Design
Figure 1.9: Legacy RAN to C-RAN Architectural Migration
Figure 1.11: Global Unlicensed LTE Small Cell Unit Shipments: 2016 - 2030 (Thousands of Units)
Figure 1.12: Global Unlicensed LTE Small Cell Unit Shipment Revenue: 2016 - 2030 ($ Million)
Figure 1.12: 5G Requirements
Figure 1.13: IMT-2020 Development Roadmap
Figure 1.14: Potential Waveform Options for 5G
Figure 1.15: D2D Communication Scenarios
Figure 1.16: LSA Concept
Figure 1.17: NFV Concept
Figure 1.18: C-RAN Architecture
Figure 1.19: Cloud RAN Concept
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