【レポートの概要(一部)】
1 Introduction (Page No. – 18)
1.1 Objectives of the Study
1.2 Market Definition
1.3 Study Scope
1.3.1 Markets Covered
1.3.2 Regional Scope
1.3.3 Years Considered for the Study
1.4 Currency & Pricing
1.5 Limitations
1.6 Market Stakeholders
2 Research Methodology (Page No. – 23)
2.1 Research Data
2.1.1 Secondary Data
2.1.1.1 Key Data From Secondary Sources
2.1.2 Primary Data
2.1.2.1 Key Data From Primary Sources
2.1.2.2 Breakdown of Primaries
2.2 Factor Analysis
2.2.1 Introduction
2.2.2 Demand Side Indicators
2.2.2.1 Increasing Demand for Cognitive Radio
2.2.2.2 Increasing Demand for Advanced Communication Systems
2.2.2.3 Increased Defense Spending By Developing Economies
2.2.3 Supply Side Indicators
2.2.3.1 Major U.S. Defense Contractors in Software Defined Radio
2.3 Market Size Estimation
2.3.1 Bottom-Up Approach
2.3.2 Top-Down Approach
2.4 Market Breakdown & Data Triangulation
2.5 Research Assumptions
3 Executive Summary (Page No. – 35)
4 Premium Insights (Page No. – 40)
4.1 Attractive Opportunities in the Software Defined Radio Market, 2016-2021
4.2 Software Defined Radio Market, By Application
4.3 Software Defined Radio Market, By Component
4.4 Software Defined Radio Market, By End-User
4.5 Software Defined Radio Market, By Type
4.6 Software Defined Radio Market, By Region
4.7 Life Cycle Analysis, By Region
5 Market Overview (Page No. – 44)
5.1 Introduction
5.2 Key Industry Insights
5.3 Market Segmentation
5.3.1 By Application
5.3.2 By Type
5.3.3 By Component
5.3.4 By End-User
5.4 Market Dynamics
5.4.1 Drivers
5.4.1.1 Demand for Advanced Communication Systems to Replace Legacy Equipment
5.4.1.2 Network Interoperability
5.4.1.3 Spectrum Reuse
5.4.1.4 Compatibility of Devices With Future Standards
5.4.1.5 Universal Connectivity
5.4.1.6 Reduced Cost of End Products and Services
5.4.2 Restraints
5.4.2.1 High Development Cost
5.4.2.2 Security Concerns
5.4.2.3 Integration Issues
5.4.2.4 Ensuring Seamless Connectivity in A Limited Bandwidth
5.4.3 Opportunities
5.4.3.1 Use of Commercial Off-The-Shelf (COTS) Technology in Software Defined Radio Systems
5.4.3.2 Growing Adoption in Commercial Applications
5.4.3.3 New Opportunities in the Form of Derived Technologies Such as Cognitive Radio
5.4.3.4 Increasing Demand in Public Safety and Homeland Security
5.4.4 Challenges
5.4.4.1 Ensuring Interoperability of Disparate Communication Technologies
5.4.4.2 Operation Circumspection
5.4.4.3 Dynamic Communication Standards
5.4.4.4 Regulatory Hurdles
5.4.5 Burning Issues
5.4.5.1 Requirement of Flexible Network
6 Industry Trends (Page No. – 55)
6.1 Introduction
6.2 Emerging Technology Trends
6.2.1 Cognitive Radio
6.2.2 Next Generation Ip
6.2.3 Near Field Communication
6.2.4 Multiband Tactical Communication Amplifiers
6.3 Innovation and Patent Registration
6.4 Key Trend Analysis
7 Software Defined Radio Market, By Application (Page No. – 59)
7.1 Introduction
7.2 Defense
7.3 Commercial
7.4 Homeland Security
8 Software Defined Radio Market, By Component (Page No. – 64)
8.1 Introduction
8.2 Transmitter
8.3 Receiver
8.4 Software
9 Software Defined Radio Market, By Type (Page No. – 69)
9.1 Introduction
9.2 Joint Tactical Radio System (JTRS)
9.3 Cognitive/Intelligent Radio
9.4 Terrestrial Trunked Radio (TETRA)
10 Software Defined Radio Market, By End User (Page No. – 76)
10.1 Introduction
10.2 Military
10.3 Telecommunications
10.4 Positioning Systems
10.5 Transportation
10.6 Others
11 Regional Analysis (Page No. – 82)
11.1 Introduction
11.2 G7 Nations
11.2.1 By Application
11.2.2 By Component
11.2.2.1 Transmitter, By Sub Segment
11.2.2.2 Receiver, By Sub Segment
11.2.3 By Type
11.2.4 By Country
11.2.4.1 U.S.
11.2.4.1.1 By Application
11.2.4.1.2 By Component
11.2.4.1.2.1 Transmitter , By Sub Segment
11.2.4.1.2.2 Receiver Segment, By Sub Segment
11.2.4.2 U.K.
11.2.4.2.1 By Application
11.2.4.2.2 By Component
11.2.4.2.2.1 Transmitter, By Sub Segment
11.2.4.2.2.2 Receiver, By Sub Segment
11.2.4.3 France
11.2.4.3.1 By Application
11.2.4.3.2 By Component
11.2.4.3.2.1 Transmitter, By Sub Segment
11.2.4.3.2.2 Receiver , By Sub Segment
11.2.4.4 Germany
11.2.4.4.1 By Application
11.2.4.4.2 By Component
11.2.4.4.2.1 Transmitter, By Sub Segment
11.2.4.4.2.2 Receiver, By Sub Segment
11.2.4.5 Japan
11.2.4.5.1 By Application
11.2.4.5.2 By Component
11.2.4.5.2.1 Transmitter , By Sub Segment
11.2.4.5.2.2 Receiver, By Sub Segment
11.2.4.6 Canada
11.2.4.6.1 By Application
11.2.4.6.2 By Component
11.2.4.6.2.1 Transmitter , By Sub Segment
11.2.4.6.2.2 Receiver, By Sub Segment
11.2.4.7 Italy
11.2.4.7.1 By Application
11.2.4.7.2 By Component
11.2.4.7.2.1 Transmitter , By Sub Segment
11.2.4.7.2.2 Receiver, By Sub Segment
11.3 BRICS
11.3.1 By Application
11.3.2 By Component
11.3.2.1 Transmitter, By Sub Segment
11.3.2.2 Receiver , By Sub Segment
11.3.3 By Type
11.3.4 By Country
11.3.4.1 Brazil
11.3.4.1.1 By Application
11.3.4.1.2 By Component
11.3.4.1.2.1 Transmitter, By Sub Segment
11.3.4.1.2.2 Receiver, By Sub Segment
11.3.4.2 Russia
11.3.4.2.1 By Application
11.3.4.2.2 By Component
11.3.4.2.2.1 Transmitter , By Sub Segment
11.3.4.2.2.2 Receiver , By Sub Segment
11.3.4.3 India
11.3.4.3.1 By Application
11.3.4.3.2 By Component
11.3.4.3.2.1 Transmitter, By Sub Segment
11.3.4.3.2.2 Receiver, By Sub Segment
11.3.4.4 China
11.3.4.4.1 By Application
11.3.4.4.2 By Component
11.3.4.4.2.1 Transmitter, By Sub Segment
11.3.4.4.2.2 Receiver , By Sub Segment
11.3.4.5 South Africa
11.3.4.5.1 By Application
11.3.4.5.2 By Component
11.3.4.5.2.1 Transmitter, By Sub Segment
11.3.4.5.2.2 Receiver, By Sub Segment
11.4 Rest of the World
11.4.1 By Application
11.4.2 By Component
11.4.2.1 Transmitter, By Sub Segment
11.4.2.2 Receiver, By Sub Segment
11.4.3 By Type
11.4.4 By Country
11.4.4.1 Saudi Arabia
11.4.4.1.1 By Application
11.4.4.1.2 By Component
11.4.4.1.2.1 Transmitter, By Sub Segment
11.4.4.1.2.2 Receiver, By Sub Segment
11.4.4.2 South Korea
11.4.4.2.1 By Application
11.4.4.2.2 By Component
11.4.4.2.2.1 Transmitter, By Sub Segment
11.4.4.2.2.2 Receiver , By Sub Segment
11.4.4.3 Turkey
11.4.4.3.1 By Application
11.4.4.3.2 By Component
11.4.4.3.2.1 Transmitter, By Sub Segment
11.4.4.3.2.2 Receiver, By Sub Segment
12 Competitive Landscape (Page No. – 127)
12.1 Introduction
12.2 Key Players in Software Defined Radio Market, By Region, (2015)
12.3 Brand Analysis
12.4 Product Mapping
12.5 Market Share Analysis
12.6 Competitive Situations and Trends
12.6.1 Contracts
12.6.2 New Product Launches
12.6.3 Acquisitions, Agreements & Partnerships
13 Company Profiles (Page No. – 140)
(Company at A Glance, Recent Financials, Products & Services, Strategies & Insights, & Recent Developments)*
13.1 Introduction
13.2 Financial Highlights
13.3 Northrop Grumman Corporation
13.4 BAE Systems PLC.
13.5 Elbit Systems Ltd.
13.6 L-3 Communications Holdings, Inc.
13.7 Thales Group
13.8 Raytheon Company
13.9 Harris Corporation
13.10 Viasat, Inc.
13.11 Rohde & Schwarz
13.12 Datasoft Corporation
*Details on Company at A Glance, Recent Financials, Products & Services, Strategies & Insights, & Recent Developments Might Not Be Captured in Case of Unlisted Companies.
14 Appendix (Page No. – 171)
14.1 Discussion Guide
14.2 Knowledge Store: Marketsandmarkets’ Subscription Portal
14.3 Introducing RT: Real Time Market Intelligence
14.4 Available Customizations
14.5 Related Reports
14.6 Author Details
【レポート販売概要】
■ タイトル:ソフトウェア無線(SDR)の世界市場予測(~2021年)■ 英文:Software Defined Radio Market by Application (Defense, Commercial, Homeland Security), Component (Software, Transmitter, Receiver), End User (Military, Transportation), Type (JTRS, Cognitive/Intelligent Radio, TETRA) - Global Forecast to 2021
■ 発行日:2016年11月14日
■ 調査会社:MarketsandMarkets
■ 商品コード:AS-2239
■ 調査対象地域:グローバル
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