【レポートの概要(一部)】
1 Introduction (Page No. – 20)
1.1 Objectives of the Study
1.2 Market Definition
1.3 Study Scope
1.3.1 Markets Covered
1.3.2 Geographic Scope
1.3.3 Years Considered for the Study
1.4 Currency
1.5 Package Size
1.6 Limitations
1.7 Stakeholders
2 Research Methodology (Page No. – 25)
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 Key Industry Insights
2.1.2.3 Breakdown of Primaries
2.2 Market Size Estimation
2.2.1 Bottom-Up Approach
2.2.2 Top-Down Approach
2.3 Market Breakdown and Data Triangulation
2.4 Research Assumptions
3 Executive Summary (Page No. – 33)
4 Premium Insights (Page No. – 39)
4.1 Attractive Opportunities in the Radar Sensor Market Between 2016 and 2022
4.2 Radar Sensor Market, By Type (2016–2022)
4.3 Market, By Band (2016–2022)
4.4 Market, By Range (2016–2022)
4.5 Radar Sensor Market, By Vertical (2016–2022)
4.6 Market, By Application (2016–2022)
4.7 Radar Sensor Market, By Region and By Application
4.8 Market, By Geography (2016–2022)
4.9 Life Cycle Analysis, By Region
5 Market Overview (Page No. – 46)
5.1 Introduction
5.2 Market Segmentation
5.2.1 Radar Sensor Market, By Technology
5.2.2 Market, By Component
5.2.3 Radar Sensor Market, By Type
5.2.4 Market, By Band
5.2.5 Radar Sensor Market, By Range
5.2.6 Market, By Application
5.2.7 Radar Sensor Market, By Vertical
5.2.8 Market, By Region
5.3 Market Dynamics
5.3.1 Drivers
5.3.1.1 Increasing Territorial Conflicts and Geopolitical Instabilities in Major Regions
5.3.1.2 Rising Demand for Radars Worldwide Since Militaries Seek to Replace Legacy Systems
5.3.1.3 Increasing Focus on Safety, Comfort, and Assistance Features in Vehicles
5.3.2 Restraints
5.3.2.1 Usage of Radar Detectors Considered as Illegal in Some Countries
5.3.2.2 High Development Cost of Radar Sensor and Systems
5.3.3 Opportunities
5.3.3.1 Increase in Military Spending By the Developing Countries
5.3.3.2 High Growth Opportunities in the Automotive Sector
5.3.3.3 Emergence of Driverless Cars
5.3.4 Challenges
5.3.4.1 Electromagnetic Jamming and Noise Interruption
6 Industry Trends (Page No. – 61)
6.1 Introduction
6.2 Value Chain Analysis
6.2.1 Core Industry Segments
6.2.1.1 Chip Designers
6.2.1.2 Component Manufacturers
6.2.1.3 Technology Providers
6.2.1.4 Integrators
6.2.1.5 End-User Industries
6.3 Key Industry Trends in the Radar Sensor Market
6.4 Porter’s Five Forces Analysis
6.4.1 Threat of New Entrants
6.4.2 Threat of Substitutes
6.4.3 Bargaining Power of Suppliers
6.4.4 Bargaining Power of Buyers
6.4.5 Intensity of Competitive Rivalry
6.5 Pest Analysis
6.5.1 Political Factors
6.5.2 Economic Factors
6.5.3 Social Factors
6.5.4 Technological Factors
7 Technologies Used in Radar (Page No. – 73)
7.1 Introduction
7.1.1 Role of Major Manufacturing Technologies in Radar Systems
7.1.1.1 Gallium-Nitride (GAN)
7.1.1.2 Silicon-Germanium (SIGE)
7.1.1.3 Complementary Metal-Oxide Semiconductor (CMOS)
7.2 Time Domain Reflectometry (TDR)
7.3 Ultra-Wideband (UWB)
7.4 Others
7.4.1 Rf Mems-Based Radar Sensors
7.4.2 Millimeter Wave
8 Major Components of Radar (Page No. – 77)
8.1 Introduction
8.2 Antenna
8.3 Diplexer
8.3.1 Role of Duplexer in the Radar System
8.4 Transmitter
8.5 Receiver
8.6 Processing
9 Market, By Type (Page No. – 81)
9.1 Introduction
9.1.1 Major Groups of A Radar System
9.1.1.1 Synthetic Aperture Radar (SAR)
9.1.1.2 Interferometric SAR (INASAR)
9.1.1.3 Pass-To-Pass Coherent SAR
9.1.1.4 Ground Moving Target Indicator (GMTI)
9.1.1.5 Ground Penetrating Radar (GPR)
9.2 Imaging Radar (Primary Type)
9.2.1 Continuous Wave (CW) Radar
9.2.1.1 Modulated CW Radar
9.2.1.2 Unmodulated CW Radar
9.2.2 Pulse Radar
9.2.2.1 MTI Radar
9.2.2.2 Doppler Radar
9.2.2.3 Difference Between Pulse Doppler Radar and MTI Radar
9.3 Non-Imaging Radar (Secondary Type)
9.3.1 Speed Gauge
9.3.2 Radar Altimeter
9.3.2.1 Radar Altimeter Application in Aircraft
9.3.2.2 Radar Altimeter Application in Spacecraft
9.3.2.3 Radar Altimeter Application in Military
9.3.2.4 Radar Altimeter Application in Remote Sensing
10 Market, By Band (Page No. – 95)
10.1 Introduction
10.2 HF, VHF, and UHF Bands
10.2.1 HF and VHF Bands
10.2.2 UHF Bands
10.3 L, S, C, and X Bands
10.3.1 L Band
10.3.2 S Band
10.3.3 C Band
10.3.4 X Band
10.4 Ku, K, Ka, V, and W Bands
10.4.1 Ku Band
10.4.2 K Band
10.4.3 Ka Band
10.4.4 V Band
10.4.5 W Band
11 Market, By Range (Page No. – 107)
11.1 Introduction
11.1.1 Standard Range Specification of Automotive Industry
11.1.1.1 Short-Range Radar Sensor (SRR)
11.1.1.2 Long-Range Radar Sensor (LRR)
11.1.1.2.1 LRR1 and LRR2
11.1.1.2.2 LRR3
11.1.1.2.3 LRR4
11.1.2 Standard Range Specification of the A&D Industry
11.1.2.1 Short-Range
11.1.2.2 Mid-Range
11.1.2.3 Long-Range
11.1.3 Standard Range Specification for Other Sectors
11.1.4 Range Parameter Considered Under the Study
11.2 Short-Range Radar Sensor
11.3 Mid-Range Radar Sensor
11.4 Long-Range Radar Sensor
12 Market, By Application (Page No. – 119)
12.1 Introduction
12.2 Automotive
12.2.1 Collision Avoidance System
12.2.2 Blind Spot Detection
12.2.3 Adaptive Cruise Control
12.2.4 Lane Departure Warning System
12.2.5 Object Detection System
12.2.6 Stop & Go Funcionality
12.3 Aerospace & Defense
12.3.1 Ground Based
12.3.2 Naval Based
12.3.3 Airborne Based
12.3.4 Space Based
12.4 Industrial
12.4.1 Machine Safeguarding Area
12.4.2 Collision Protection
12.4.3 Industrial Robot
12.4.4 Measuring Working Environment
12.4.5 Mine Inspection
12.4.6 Tunnell Wall Inspection
12.4.7 Locating Underground Pipes
12.5 Security & Surveillance
12.5.1 Access Control System
12.5.2 Perimeter Security
12.5.3 Transportation
12.5.4 Commercial Facilities
12.6 Traffic Monitoring and Management
12.6.1 Traffic Flow Analysis
12.6.2 Traffic Light Control
12.6.3 Traffic Classification
12.6.4 Distance Measuring Equipment
12.6.5 Air Traffic Control (ATC) Radar
12.6.6 Ground Control Approach (GTC) Radar
12.7 Environmental & Weather Monitoring
12.7.1 Weather Survelliance Radar System
12.7.2 Weather and Planetary Observation
12.8 Other Applications
12.8.1 Healthcare
12.8.2 Agriculture
12.8.3 Construction Machines
12.8.4 Smart Electronics Devices
13 Market, By Vertical (Page No. – 159)
13.1 Introduction
13.2 Commercial
13.3 Government
13.4 Industrial
14 Geographic Analysis (Page No. – 168)
14.1 Introduction
14.2 North America
14.2.1 U.S.
14.2.1.1 U.S. is Home to Some of the Major Radar Sensor and System Manufacturers in the World
14.2.1.2 Current Situation in Syria and Libya Against Isis Resulted in Adoption of Advanced Uavs By the U.S. Forces
14.2.2 Canada
14.2.2.1 Canada to Be the Second-Largest North American Market for Radar Sensors Owing to Increasing Territorial Conflicts and Geopolitical Instabilities
14.2.2.2 Companies Opting New Contracts of Radar Systems
14.2.3 Mexico
14.2.3.1 Mexican Government Upgrading Its Military Infrastructure
14.3 Europe
14.3.1 France
14.3.1.1 France Was the Third-Largest Automobile Manufacturer (2015)
14.3.1.2 Revision in Defense Budget Due to Recent Terrorist Attack in Paris
14.3.2 U.K.
14.3.2.1 Strong Automotive and Consumer Electronics Industries
14.3.2.2 U.K. to Hold A Larger Market Share Compared to Other European Countries
14.3.3 Italy
14.3.3.1 Italy Strengthens Its Defense Solutions to Overcome Concerns Related to Immigrants and Isil Threats
14.3.4 Rest of Europe
14.3.4.1 Spain Ranked Second in the Automobile Manufacturing in 2015
14.4 Asia-Pacific (APAC)
14.4.1 China
14.4.1.1 China is the Largest Economic Power in APAC
14.4.1.2 Upgrading Defense and Military Systems
14.4.2 Japan
14.4.2.1 Japan Ranks Third in Terms of Global Vehicle Production (2015)
14.4.2.2 Japanese Military is Among the Most Powerful Armies in the APAC Region
14.4.3 India
14.4.3.1 Terrorists Attacks and Border Disputes With Neighboring Nations Would Boost the Demand for Radar Sensors and Systems in India
14.4.3.2 Sixth-Largest Automobile Industry in the World in Terms of Vehicle Unit Production (2015)
14.4.4 South Korea
14.4.4.1 Home to Major Automotive Manufacturers
14.4.5 Rest of APAC
14.5 Rest of the World (RoW)
14.5.1 South America
14.5.2 Middle East & Africa
15 Competitive Landscape (Page No. – 196)
15.1 Overview
15.2 Key Players in Radar Sensor Market
15.3 Competitive Situations and Trends
15.3.1 New Product Developments
15.3.2 Partnerships, Agreements, Contracts, and Collaborations
15.3.3 Other Developments
15.3.4 Mergers & Acquisitions
15.3.5 Expansions
16 Company Profiles (Page No. – 207)
(Overview, Products and Services, Financials, Strategy & Development)*
16.1 Introduction
16.2 Robert Bosch GmbH
16.3 Continental AG
16.4 Denso Corporation
16.5 ZF Friedrichshafen AG
16.6 Delphi Automotive PLC
16.7 Hella KGAA Hueck & Co
16.8 Infineon Technologies AG
16.9 Autoliv Inc.
16.10 Airbus Group
16.11 Lockheed Martin Corporation
16.12 Raytheon Company
16.13 NXP Semiconductors N.V.
16.14 Escort Inc.
16.15 Smart Microwave Sensors GmbH
16.16 Omniradar BV
*Details on Overview, Products and Services, Financials, Strategy & Development Might Not Be Captured in Case of Unlisted Companies.
17 Appendix (Page No. – 250)
17.1 Insights of Industry Experts
17.2 Discussion Guide
17.3 Knowledge Store: Marketsandmarkets’ Subscription Portal
17.4 Introducing RT: Real-Time Market Intelligence
17.5 Available Customizations
17.5.1 Radar Sensor Market, By Automotive Application (2016–2022)
17.5.2 Market, By Western Europe and Eastern Europe Region (2016–2022)
17.5.3 Market, By Type (For 2017, 2019, and 2021)
17.5.4 Radar Sensor Market, By Band (For 2017, 2019, and 2021)
17.5.5 Market, By Range (For 2017, 2019, and 2021)
17.5.6 Radar Sensor Market, By Application (For 2017, 2019, and 2021)
17.5.7 Market, By Vertical (For 2017, 2019, and 2021)
17.6 Related Reports
【レポート販売概要】
■ タイトル:レーダセンサの世界市場:画像レーダ、非画像レーダ■ 英文:Radar Sensor Market by Type (Imaging and Non-Imaging), Technology, Component, Band (HF, VHF, and UHF; L, S, C, and X; Ku, K, Ka, V, and W), Range (Short-Range, Mid-Range, Long-Range), Application, Vertical, and Geography - Global Forecast to 2022
■ 発行日:2016年6月7日
■ 調査会社:MarketsandMarkets
■ 商品コード:MAM-SE-4363
■ 調査対象地域:グローバル
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