Due to substantial improvements like significant reductions in size, weight, and cost, improved battery life, and an increasing degree of autonomy in its functioning.
Drones have also been used in various sectors around the world, including infrastructure, insurance, logistics and transportation, media and entertainment, oil and gas, agriculture, mining, telecommunications, and defence.
Due to the rising use of commercial drones and events involving them, counter UAV technology or anti-drone technologies have been developed to nullify rogue drones. Counter-drone technology also referred to as counter-UAS, C-UAS, or C-UAS technology, is a sort of gadget designed to locate, track, and neutralise unidentified unmanned aerial vehicles (UAVs).
Some anti-drone systems use sensors that identify unidentified UAVs, identify dangers using electro-optical/infrared imaging and RF emissions, and neutralise the threat.
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During the projection period 2021-2031, the worldwide counter-UAS (anti-drone) market is expected to increase at 15.18 percent, from $1.57 billion in 2021 until $6.44 billion by 2031. The necessity to monitor and manage the expanding number of satellites launched is a primary driving factor for the industry’s resilience.
Counter UAS Market Segmentation
Application, technology, configuration, platform, end-use, and region are all used to segment the Counter UAS market.
Depending on the technology, the worldwide Counter UAS market is segmented into kinetic systems, laser systems, and electronic systems. Electronic systems are anticipated to witness a significant growth share of the Counter UAS market during the projected period. This is due to significant investment by major global players.
The Counter UAS market is divided into three categories based on platform: air, ground, and naval. Since most counter UAS systems are ground-based, the ground-based category is likely to have the largest market share over the projection period.
The Counter UAS market is divided into two types: portable and vehicle-mounted.
Depending on end-use, this market is divided into three categories: commercial, military and defence, as well as homeland security. The military and defence sectors are likely to have the largest share of the market. Lately, nations have prioritised strengthening counter-UAS systems to monitor terrorist operations. This segment’s need would be boosted, and it is predicted to increase at a higher rate.
This market is divided into detection plus interdiction depending on the application. Radar, RF scanners, and acoustic systems are among the detection methods. Nets, lasers, spoofing, and jammers are all parts of the interdiction system.
Classification by region
Asia Pacific, North America, Europe, Middle East & Africa, and Latin America are the primary areas worldwide Counter UAS market. In 2018, North America held the largest proportion of the Counter UAS market, with a value of 227.6 million. The North American market is anticipated to grow at a CAGR of 27.09 percent throughout the forecast period.
Counter-UAVs are gaining popularity as well as interest in several countries. Nevertheless, they are in the early stages of mass adoption and deployment, and nations will need to invest in counter-UAS technology to infiltrate areas where industry has been lacking.
Approximately one million drones have been registered with the FAA, as well as the number is growing every day. With such a large number of drones in the air, effective detection systems can help to mitigate the risks connected with drone use.
The report provides insights on the following pointers:
Chapter 1 Study Coverage
Chapter 2 Executive Summary
Chapter 3 Counter UAS Market Competitor Landscape by Players
Chapter 4 Counter UAS Market Size by Type and Application
Chapter 5 Global and Regional Analysis
Chapter 6 Company Profiles, recent developments, and investments
Chapter 7 Market Opportunities, Challenges, Risks and Influences Factors Analysis
Chapter 8 Value Chain and Sales Channels Analysis with breakthrough product developments
Chapter 9 Research Findings and Conclusion
Chapter 10 Methodology/Research Approach