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Details
The UAV sense and avoid systems market is growing at a robust growth rate since the past few years. The technology of sensing and avoiding any obstacle has considerably improved over the years. Their increased adoption across commercial and non-commercial applications, and stringent rules and regulations imposed by governments of various countries for the safety of UAVs, are the two significant factors driving the demand in UAV sense and avoid systems market. However, factors such as communicational constraints, lower efficiency of sense and avoid systems, and miniaturizing collision avoidance system for small UAVs are some of the prominent challenges in the UAV sense and avoid systems market. On the other hand, increasing technological advancements to build fully autonomous drones, and demand of sense and avoid technologies for swarm drones are expected to open several future opportunities for the growth of the UAV sense and avoid systems market.
The major technologies of UAV sense and avoid systems include cooperative and non-cooperative technologies. The major applications of UAV sense and avoid systems are commercial and non-commercial applications. The commercial applications can further be sub-divided into inspection, aerial imaging, and first responder, among others.
The following points provide a concrete description of the report content and the topics covered in the report:
This report identifies the global UAV sense and avoid systems market in different segments such as technology, application, and region
The study includes the market analysis and forecast of the global UAV sense and avoid systems market from 2016 to 2022 in terms of value and volume
The study talks about the prime supply side factors affecting the growth of the market along with the current and future trends in the UAV sense and avoid systems market
The study also presents a detailed examination of the UAV sense and avoid systems market along the lines of market drivers, restraints, growth opportunities, and challenges
The study provides detailed analysis of industry attractiveness through Porter’s Five Forces analysis
The report also highlights the value chain of the overall UAV sense and avoid system industry
The report also includes patent analysis of the overall UAV sense and avoid systems market
A detailed competitive analysis has been included in this report which focuses on the key market developments & strategies followed by the key players in the market
The report also provides a detailed study of the technologies used in UAV sense and avoid systems market such as cooperative and non-cooperative
The report also provides a detailed study of the applications in which UAV sense and avoid systems are used such as commercial and non-commercial
The UAV sense and avoid systems market has been analyzed for all the geographies including North America, Europe, Asia-Pacific, and Rest of the World with further analysis with respect to several major countries
The key market players are analyzed and profiled in detail in the Company Profiles section of the report. This section covers the business financials, company snapshots, key products & services, major developments, and finally, the individual SWOT analysis.
Executive Summary
1 Report Scope & Methodology
1.1 Scope of the Report
1.2 Global Sense and Avoid Systems Market Segmentation
1.3 Research Methodology
1.3.1 Top-Down Approach (Segmental Analysis)
1.3.2 Bottom-Up Approach (Segmental Analysis)
1.4 Assumptions and Limitations
2 Market Dynamics
2.1 Market Drivers
2.2 Market Challenges
2.3 Market Opportunities
3 Competitive Insights
3.1 Key Developments and Strategies
3.2 Key Market Developments
3.2.1 New Product Launches
3.2.2 Contracts
3.2.3 Business Expansion
3.2.4 Acquisition, Collaborations & Partnerships
3.2.4 Other Developments
3.3 Pricing Analysis: ABSAA Components Price Analysis
3.4 Product Mapping
4 Industry Analysis
4.1 Technology Roadmap
4.2 Value Chain Analysis
4.3 Major Military Programs
4.4 Patent Analysis
4.5 Funding in Drone Start-ups, 2014-2016
4.5.1 Funding in Drone Start Ups by Geography, 2014-2016
4.6 Global Drone Market: Regulatory Environment
4.6.1 Drone Regulatory Authorities by Country
4.6.2 Country-wise Drone Regulations by Application
5 Global Sense and Avoid System Market Assumptions and Limitations
5.1 Assumptions and Limitations
5.2 Market Oveview
6 Global Sense and Avoid System Market by Application
6.1 Market Overview
6.2 Non-Commercial
6.3 Commercial
6.3.1 Inspection
6.3.2 Delivery
6.3.3 Aerial Imaging
6.3.4 First Responder
6.3.5 Others
7 Global Sense and Avoid System Market by Technology
7.1 Market Overview
7.2 Co-Operative Technology
7.2.1 Traffic Alert and Collision Avoidance System (T-CAS)
7.2.2 Automatic Dependence Surveillance Broadcast (ADS-B) Transponder
7.3 Non-CoOperative Technology
7.3.1 Active Sensors
7.3.1.1 Radar
7.3.1.2 LiDAR
7.3.1.3 Sonar/Ultrasonic Sensors
7.3.2 Passive Sensors
7.3.2.1 EO/IR Cameras
7.3.2.2 Others
8 Global UAV Sense and Avoid Systems Market by Region
8.1 Market Overview
8.2 North America
8.2.1 The U.S.
8.2.2 Canada
8.3 Europe
8.3.1 The U.K.
8.3.2 France
8.3.3 Italy
8.3.4 Germany
8.3.5 Spain
8.4 Asia-Pacific
8.4.1 China
8.4.2 Australia
8.4.3 Japan
8.4.4 India
8.4 Rest of the World
9 Company Profiles
9.1 Aerialtronics
9.1.1 Company Overview
9.1.2 Products and Services
9.1.3 SWOT Analysis
9.2 BAE Systems
9.2.1 Company Overview
9.2.2 Products and Services
9.2.3 Financial Analysis
9.2.3.1 Financial Summary
9.2.4 SWOT Analysis
9.3 Echodyne Corp.
9.2.3 SWOT Analysis
9.4 FLARM Technology Ltd.
9.4.1 Company Overview
9.4.2 Products and Services
9.4.3 SWOT Analysis
9.5 General Atomics Aeronautical Systems, Inc.
9.5.1 Company Overview
9.5.2 Corporate Summary
9.5.3 Products and Services
9.5.4 SWOT Analysis
9.6 Harris Corporation
9.6.1 Company Overview
9.6.2 Products and Services
9.6.3 Financial Analysis
9.6.3.1 Financial Summary
9.6.4 SWOT Analysis
9.7 Honeywell International Inc.
9.7.1 Company Overview
9.7.2 Products and Services
9.7.3 Financial Analysis
9.7.3.1 Financial Summary
9.7.4 SWOT Analysis
9.8 IMSAR LLC
9.8.1 Company Overview
9.8.2 Products and Services
9.8.3 SWOT Analysis
9.9 Intel Corporation
9.9.1 Company Overview
9.9.2 Products and Services
9.9.3 Financial Analysis
9.9.3.1 Financial Summary
9.9.4 SWOT Analysis
9.10 Leonardo-Finmeccanica Spa
9.10.1 Company Overview
9.10.2 Products and Services
9.10.3 Financial Analysis
9.10.3.1 Financial Summary
9.10.4 SWOT Analysis
9.11 Panoptes Systems Corporation
9.11.1 Company Overview
9.11.2 Products and Services
9.11.3 SWOT Analysis
9.12 Precision Hawk
9.12.1 Company Overview
9.12.2 Products and Services
9.12.3 SWOT Analysis
9.13 Safran Electronics & Defense
9.13.1 Company Overview
9.13.2 Products and Services
9.13.3 Financial Analysis
9.13.3.1 Financial Summary
9.13.3 SWOT Analysis
9.14 Sagetech Corporation
9.14.1 Company Overview
9.14.2 Products and Services
9.14.3 SWOT Analysis
9.15 Thales Group
9.15.1 Company Overview
9.15.2 Products and Services
9.15.3 Financials
9.15.3.1 Financial Summary
9.15.4 SWOT Analysis
9.16 uAvionix
9.16.1 Company Overview
9.16.2 Products and Services
9.16.3 SWOT Analysis
9.17 Other Key Players
List of Tables
1 Global UAV Sense and Avoid Systems Market, 2016-2022
2 Global UAV Sense and Avoid Systems Market by Technology, 2016-2022
3 Global UAV Sense and Avoid Systems Market by Application, 2016-2022
3.1 New Product Launches
3.2 Contracts
3.3 Business Expansion
3.4 Acquisition, Collaborations & Partnerships
3.5 Other Developments
4.1 Major Military Programs
4.2 Gimbal-assisted radar detection system for unmanned aircraft system (UAS)
4.3 UAV automatic collision avoidance system
4.4 UAVobstacle avoidance method and system
4.5 Automated flight control system for unmanned aerial vehicles
4.6 One kind of unmanned aircraftcollision avoidancesystem
4.7 Aircraft avoidance method and drone provided with a system for implementing said method
4.8 Autonomous aerial vehiclecollision avoidance system and method
4.9 Unmanned aerial system drone situational awareness flight safety and tracking system
4.10 Air-Ground Coordination Unmanned Aerial Vehicle Sensing and Avoiding System and method
4.11 Method for collision detection for agricultural plant protection unmanned aerial vehicle
4.12 Autonomous Collision Avoidance System for Unmanned Aerial Vehicles
4.13 SystemsandMethods for Unmanned Aircraft System Collision Avoidance
4.14 Manned/unmanned helicopter anti-collision system based on millimeter wave radar range finding
4.15 Countries with their Respective Regulatory Authority
4.16 Country-wise Drone Regulations by Application
6.1 Global UAV Sense and Avoid Systems Market by Application, 2016-2022 ($Million)
6.2 Global UAV Sense and Avoid Systems Market by Application, 2016-2022 (Units)
8.1 Global UAV Sense and Avoid Systems Market by Region, 2016-2022 ($Million)
List of Figures
1 Global UAV Market by Volume, 2016-2022 (Units)
2 Advantages of Sense and Avoid Systems
3 Global UAV Sense and Avoid Systems Market, 2016-2022
4 Global UAV Sense and Avoid Systems Market by Technology, 2016
5 Global UAV Sense and Avoid Systems Market by Technology, 2022
6 Global UAV Sense and Avoid Systems Market by Application, 2016
7 Global UAV Sense and Avoid Systems Market by Application, 2022
8 Global UAV Sense and Avoid Systems Market by Region, 2016
9 Global UAV Sense and Avoid Systems Market by Region, 2022
10 Global UAV Sense and Avoid Systems Market by Country, 2016
1.1 Research Methodology
1.2 Top-Down Approach
1.3 Bottom-Up Approach
2.1 Global Sense and Avoid Systems Market – Market Dynamics
3.1 Average Selling Price (ASP) of Major Components of a Airborne Sense-and-Avoid (ABSAA ) System, 2017
5.1 Global Sense And Avoid System Market Size by Value and Volume, 2016-2022
6.1 Global UAV Sense and Avoid Systems Market by Application, 2016-2022
6.2 Global UAV Sense and Avoid Systems Market by Application (Value), 2016 and 2022 (%Share)
6.3 Global UAV Sense and Avoid Systems Market by Application (Value), 2016 and 2022
6.4 Global UAV Sense and Avoid Systems Market by Application (Volume), 2016 and 2022 (%Share)
6.5 Global UAV Sense and Avoid Systems Market by Application (Volume), 2016 and 2022
6.6 Global UAV Sense and Avoid Systems Market by Commercial Application (Value), 2016 to 2022
6.7 Global UAV Sense and Avoid Systems Market by Commercial Application (Volume), 2016 to 2022
6.8 Non-Commercial Application Market (Value), 2016-2022
6.9 Commercial Application Market (Value), 2016-2022 ($Million)
6.10 Commercial Applications of UAV Sense and Avoid System, Share (%), 2016
6.11 Inspection Application Market (Value), 2016-2022
6.12 Delivery Application Market (Value), 2016-2022
6.13 Aerial Imaging Application Market (Value), 2016-2022
6.14 First Responder Application Market (Value), 2016-2022
6.15 Other Application Market (Value), 2016-2022
7.1 Co-Operative Technology Market (Value), 2016-2022
7.2 Co-Operative Technology Market by Type (Value), 2016-2022
7.3 Traffic Alert and Collision Avoidance System (T-CAS) Market (Value), 2016-2022
7.4 Automatic Dependence Surveillance Broadcast (ADS-B) Transponder Market (Value), 2016-2022
7.5 Non-Cooperative Technology Market (Value), 2016-2022
7.6 Non-Cooperative Technology Market by Type (Value), 2016-2022
7.7 Active Sensors Market (Value), 2016-2022
7.8 Active Sensor Market by Type (Value), 2016-2022
7.9 Radar Market (Value), 2016-2022
7.10 LiDAR Market (Value), 2016-2022
7.11 Sonar/Ultrasonic Sensors Market (Value), 2016-2022
7.12 Passive Sensor Market (Value), 2016-2022
7.13 Passive Sensor Market by Type (Value), 2016-2022
7.14 EO/IR Cameras Market (Value), 2016-2022
8.1 Global UAV Sense and Avoid Systems Market by Region, 2016 and 2022 ($Million)
8.2 North America UAV Sense and Avoid Market by Value, 2016-2022
8.3 Country Wise North American UAV Sense and Avoid Market by Value, 2016-2022
8.4 The U.S. Sense and Avoid Systems Market (Value), 2016-2022
8.5 Canada Sense and Avoid Systems Market (Value), 2016-2022
8.6 Europe UAV Sense and Avoid Market by Value, 2016-2022
8.7 The U.K. Sense and Avoid Systems Market (Value), 2016-2022
8.8 France Sense and Avoid Systems Market (Value), 2016-2022
8.9 Italy Sense and Avoid Systems Market (Value), 2016-2022
8.10 Germany Sense and Avoid Systems Market (Value), 2016-2022
8.11 Spain Sense and Avoid Systems Market (Value), 2016-2022
8.12 Asia-Pacific UAV Sense and Avoid Market by Value, 2016-2022
8.13 China Sense and Avoid Systems Market (Value), 2016-2022
8.14 Australia Sense and Avoid Systems Market (Value), 2016-2022
8.15 Japan Sense and Avoid Systems Market (Value), 2016-2022
8.16 India Sense and Avoid Systems Market (Value), 2016-2022
8.17 Rest of the World UAV Sense and Avoid Market by Value, 2016-2022
8.18 Country Wise Rest of the World UAV Sense and Avoid Market by Value, 2016-2022
9.1 Aerialtronics: Products and Services
9.2 Aerialtronics: SWOT Analysis
9.3 BAE Systems: Products and Services
9.4 BAE Systems: Financials
9.5 BAE Systems: SWOT Analysis
9.6 Echodyne Corp.: Products and Services
9.7 Echodyne Corp.: SWOT Analysis
9.8 FLARM Technology Ltd.: Products and Services
9.9 FLARM Technology Ltd.: SWOT Analysis
9.10 General Atomics Aeronautical Systems, Inc.: Products and Services
9.11 General Atomics Aeronautical Systems, Inc.: SWOT Analysis
9.12 Harris Corporation: Products and Services
9.13 Harris Corporation: Financials
9.14 Harris Corporation: SWOT Analysis
9.15 Honeywell International Inc.: Products and Services
9.16 Honeywell International Inc.: Financials
9.17 Honeywell International Inc.: SWOT Analysis
9.18 IMSAR LLC: Products and Services
9.19 MSAR LLC: SWOT Analysis
9.20 Intel Corporation: Products and Services
9.21 Intel Corporation: Financials
9.22 Intel Corporation: SWOT Analysis
9.23 Leonardo-Finmeccanica Spa: Products and Services
9.24 Leonardo-Finmeccanica Spa: Financials
9.25 Leonardo-Finmeccanica Spa: SWOT Analysis
9.26 Panoptes Systems Corporation: Products and Services
9.27 Panoptes Systems Corporation: SWOT Analysis
9.28 Precision Hawk: SWOT Analysis
9.29 Safran Electronics & Defense: Products and Services
9.30 Safran Electronics & Defense: Financials
9.31 Safran Electronics & Defense: SWOT Analysis
9.32 Sagetech Corporation: Products and Services
9.33 Sagetech Corporation: SWOT Analysis
9.34 Thales Group: Products and Services
9.35 Thales Group: Financials
9.36 Thales Group: SWOT Analysis
9.37 uAvionix: Products and Services
9.38 uAvionix: SWOT Analysis
The usage of sense and avoid system in Unmanned Aerial Vehicles (UAVs) has increased in the past few years owing to the advantages of these systems such as safety in airspace and enabling the beyond visual line of sight operation of UAVs. With the increase in the demand of drones that can operate autonomously, the demand of sense and avoid system has increased across the commercial as well as non-commercial applications.
Sense and avoid systems, as the name suggests, are a combination of some preprogrammed sensors and controllers installed in the airframe of UAVs that enable it to detect any obstacle in its path and avoid it successfully while flying in the airspace. The sense and avoid systems use a combination of cameras, radar, LiDAR and other components to detect and successfully avoid the obstacles. Some of the prime factors behind the rise in the demand of sense and avoid systems are increasing procurement of UAVs for military and commercial uses, and stringent rules and regulations imposed by government for UAV safety.
The demand for sense and avoid systems used in UAVs is rapidly increasing among different applications across the globe. The market is driven by number of factors such as rise in the demand of autonomous drone for beyond visual line of sight operations. The UAVs equipped with sense and avoid systems are increasingly being adopted in commercial as well as non-commercial applications.
The UAV sense and avoid systems market accounted for a market value of $508.7 million in 2016 with commercial application holding the highest share.
The commercial segment currently accounts for a large share in the overall revenue generated in overall UAV sense and avoid system market. The high share of commercial end-user is primarily attributed to the high demand of drones across various commercial applications and the rise in demand for drones equipped with sense and avoid system across commercial applications such as, inspection, delivery, first responder, and aerial imaging, among others.
North America is expected to hold the largest share in the market during the forecast period which is followed by Europe, Asia Pacific, and Rest of the world. The United States is the leading country in the UAV sense and avoid systems market, globally, and is expected to maintain its significant share during the forecast period. The country has the presence of several commercial and non-commercial UAV sense and avoid system manufacturers. North America is anticipated to grow at a high CAGR during the forecast period.
Some of the key players in the UAV sense and avoid system market include: Aerialtronics, BAE Systems, Echodyne Corp., General Atomics Aeronautical Systems, Inc., Harris Corporation, Honeywell International Inc., IMSAR LLC, Intel Corporation, Leonardo-Finmeccanica Spa, Panoptes Systems Corporation, Precision Hawk, Safran Electronics & Defense, Sagetech Corporation, Thales Group, and uAvionix.
North America
U.S.
Canada
Europe
U.K.
France
Italy
Germany
Spain
Asia-Pacific
China
Australia
Japan
India
RoW
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According to a new market intelligence report by BIS Research, titled "Global UAV Sense and Avoid Systems Market, Analysis & Forecast, 2017 - 2022", the UAV sense and avoid systems market is expected to reach $3,654.3 million by 2022. The sense and avoid systems are used in UAVs to make them capable enough to detect any obstacle in their path and avoid it during their flight to save them from damage. Based on their technology, these systems are categorized as cooperative technology and non-cooperative technology. The cooperative technology include Traffic Alert and Collision Avoidance System (T-CAS) and Automatic Dependence Surveillance Broadcast (ADS-B) transponder. The non-cooperative technology include active sensors and passive sensors. The active sensors are Radar, LiDAR, and Sonar/Ultrasonic Sensors, whereas the passive sensors are EO/IR camera and others.
The global UAV sense and avoid systems market is driven by several factors such as increased adoption across commercial and non-commercial applications, rules and regulations imposed by governments of various countries for the safety of UAVs. Furthermore, increasing technological advancements to build fully autonomous drones and demand of sense and avoid technologies for swarm drones are expected to create viable opportunities in the UAV sense and avoid system market.
The key manufacturers of cameras used in drones are indulging in collaborations and launching new cost-effective sense and avoid systems for drones. According to BIS Research Analysis, the global UAV sense and avoid systems market was $508.7 million in 2016.
The technological advancement in sense and avoid systems and the increase in the demand of UAVs across commercial and non-commercial applications have pushed the manufacturers to develop cost-effective and feature rich sense and avoid systems for UAVs. Aerialtronics, BAE Systems, Echodyne Corp., General Atomics Aeronautical Systems, Inc., Harris Corporation, Honeywell International Inc., IMSAR LLC, Intel Corporation, Leonardo-Finmeccanica Spa, Panoptes Systems Corporation, and Precision Hawk etc. are some of the leading manufacturers that develop sense and avoid systems.
Sense and avoid systems are categorized on the basis of technology such as cooperative and non-cooperative. Moreover, on the basis of applications, the market is categorized into commercial and non-commercial applications. Commercial applications include inspection, delivery, first responder, and aerial imaging, among others. Commercial applications are expected to account for the highest revenue during the forecast period. In the commercial application, the market for inspection and aerial imaging is expected to dominate. At the same time, market share of non-commercial application is anticipated to increase considerably during the forecast period.
According to Gaurav Shukla, analyst at BIS Research, “The usage of sense and avoid systems in the UAVs has witnessed an increase in the recent past. The government across the globe are working on the formulating regulations for UAVs to be used in beyond visual line of sight (BVLOS) operations, which will make it mandatory for UAVs to have advance sense and avoid system. This is expected to increase the demand of sense and avoid systems used for UAVs during the forecast period”
The market report provides a detailed analysis of the recent trends influencing the market, along with a comprehensive study of the future trends and developments. It also includes a competitive analysis of the leading players in the industry, including corporate overview, financials, financial summary and SWOT analysis. The overall market has been segmented by technology, namely: Cooperative and Non-Cooperative. Another segmentation has been done based on application namely: Commercial and Non-Commercial. The report also includes a comprehensive section on the geographical analysis including country analysis for more than 11 different countries.
This report is a meticulous compilation of research on more than 50 players in the drone ecosystem and draws upon insights from in-depth interviews with the key opinion leaders of more than 10 leading companies, market participants and vendors. The report also profiles around 15 companies which include Aerialtronics, BAE Systems, Echodyne Corp., FLARM Technology Ltd., General Atomics Aeronautical Systems, Inc., Harris Corporation, Honeywell International Inc., IMSAR LLC, Intel Corporation, Leonardo-Finmeccanica Spa, Panoptes Systems Corporation, Precision Hawk, and uAvionix. Some other key players studied in the report include, Iris Automation, Inc., Hawk Aerospace, Vigilant Aerospace Systems, Aerotenna, Qelzal, Skydio Inc., Airware, Integrated Robotics Imaging Systems Ltd, SkySpecs Inc., Agile Sensor Technologies Inc., EMT Penzberg, YellowScan, Fortem Technologies, Inc., InVisage Technologies, and Terabee.
Key questions answered in the report:
• What are the major market drivers, challenges and opportunities in the global UAV sense and avoid systems market?
• How the UAV sense and avoid systems market is evolving and what is its scope in the future?
• What was the total revenue and unit shipment generated in the global UAV sense and avoid systems market in 2016, and what were the estimates in 2017 and what is the forecast till 2022?
• What was the market share of the leading segments in the global UAV sense and avoid systems market in 2016 and what will be the share in 2022?
• How will each segment of the global UAV sense and avoid systems market grow during the forecast period and what will be the revenue generated by each of the segments by the end of 2022?
• Which UAV sense and avoid system applications (commercial and non-commercial) will dominate the market in the coming years?
• Which sense and avoid technology (cooperative and non-cooperative technology) will dominate the market in the coming years?
• What was the total revenue generated in the UAV sense and avoid systems market by technology in 2016, and what were the estimates in 2017 and what is the forecast till 2022?
• What are the key developmental strategies implemented by the key players to stand out in this market?
• Which region (North America, Europe, Asia-Pacific, and LAMEA) will dominate in the UAV sense and avoid systems market in the coming years?
• What is the competitive strength of the key players in the UAV sense and avoid systems market?
• Who are the key players in the market, along with their detailed analysis & profiles (including their financials, company snapshots, key products & services, and SWOT analysis)?
Aerialtronics
BAE Systems
Echodyne Corp.
FLARM Technology Ltd.
General Atomics Aeronautical Systems, Inc.
Harris Corporation
Honeywell International Inc.
IMSAR LLC
Leonardo-Finmeccanica Spa
Intel Corporation
Panoptes Systems Corporation
Precision Hawk
Safran Electronics & Defense
Sagetech Corporation
Global UAV Sense and Avoid System Market Anticipated to Reach $3,654.3 Million by 2022, Reports BIS Research
Zusätzliche Information
Autor | BIS Research INC. |
---|---|
Veröffentlicht von | BISRESEARCH |
Document type | Report |
Seitenzahl | 238 |
Gewicht(kg.) | 0.5046 |