| Market Size 2023 (Base Year) | USD 39.84 Billion |
| Market Size 2032 (Forecast Year) | USD 66.74 Billion |
| CAGR | 5.9% |
| Forecast Period | 2024 - 2032 |
| Historical Period | 2018 - 2023 |
According to Market Research Store, the global radars market size was valued at around USD 39.84 billion in 2023 and is estimated to reach USD 66.74 billion by 2032, to register a CAGR of approximately 5.9% in terms of revenue during the forecast period 2024-2032.
The radars report provides a comprehensive analysis of the market, including its size, share, growth trends, revenue details, and other crucial information regarding the target market. It also covers the drivers, restraints, opportunities, and challenges till 2032.

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Radars (Radio Detection and Ranging) are electronic systems used to detect, locate, and track objects by transmitting radio waves and analyzing the signals that bounce back after striking an object. They are essential in a wide range of applications, including aviation, maritime navigation, weather forecasting, military defense, automotive safety, and space exploration. A radar system typically consists of a transmitter that emits radio waves, an antenna that directs the waves, a receiver that detects reflected signals, and a processor that interprets the data to determine the object’s position, speed, and direction.
The growth of radar technology is driven by increasing demand for advanced surveillance, security, and navigation systems across both civil and defense sectors. In military applications, radars are crucial for early warning systems, missile guidance, and battlefield monitoring. In civil aviation and shipping, they ensure safety by preventing collisions and navigating through poor visibility conditions. The automotive sector has seen a rapid rise in radar adoption with the advancement of driver assistance systems (ADAS) and autonomous vehicles, where short- and long-range radar sensors are used for adaptive cruise control, blind-spot detection, and collision avoidance. Additionally, ongoing developments in phased-array systems, miniaturization, solid-state electronics, and signal processing are enhancing radar performance, range, resolution, and energy efficiency, broadening their use across modern industries.
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This report thoroughly analyzes the Radars Market, exploring its historical trends, current state, and future projections. The market estimates presented result from a robust research methodology, incorporating primary research, secondary sources, and expert opinions. These estimates are influenced by the prevailing market dynamics as well as key economic, social, and political factors. Furthermore, the report considers the impact of regulations, government expenditures, and advancements in research and development on the market. Both positive and negative shifts are evaluated to ensure a comprehensive and accurate market outlook.
| Report Attributes | Report Details |
|---|---|
| Report Name | Radars Market |
| Market Size in 2023 | USD 39.84 Billion |
| Market Forecast in 2032 | USD 66.74 Billion |
| Growth Rate | CAGR of 5.9% |
| Number of Pages | 190 |
| Key Companies Covered | Lockheed Martin, Northrop Grumman, Raytheon, Thales, BAE Systems |
| Segments Covered | By Types, By Application, and By Region |
| Regions Covered | North America, Europe, Asia Pacific (APAC), Latin America, Middle East, and Africa (MEA) |
| Base Year | 2023 |
| Historical Year | 2018 to 2023 |
| Forecast Year | 2024 to 2032 |
| Customization Scope | Avail customized purchase options to meet your exact research needs. Request For Customization |
The global radars market is divided by types, application, and region.
Based on types, the global radars market is divided into bistatic radar, continuous-wave radar, doppler radar, Fm-Cw radar, monopulse radar, and others.
Bistatic Radar is currently the dominant segment in the radars market due to its unique configuration where the transmitter and receiver are physically separated. This spatial separation provides significant advantages such as reduced susceptibility to electronic countermeasures and enhanced detection of stealth objects that are designed to evade traditional radar systems. These radars are extensively used in military applications, including missile tracking, air defense, and border surveillance, as they can cover larger areas and offer better resistance to jamming. The growing emphasis on defense modernization and the need for advanced surveillance technologies drive the increasing adoption of bistatic radar systems. Furthermore, research and development in multistatic radar networks, which expand on the bistatic concept, are expected to further propel market growth by improving detection accuracy and operational flexibility.
Continuous-Wave Radar (CW Radar) is widely employed in automotive safety systems such as adaptive cruise control, blind-spot detection, and collision avoidance. CW radars emit a continuous radio frequency signal and measure the Doppler shift to calculate the speed of moving targets accurately. Although CW radars lack range resolution capabilities, their simple design and relatively low cost make them popular in commercial and industrial applications where velocity measurement is critical. Advances in signal processing and integration with other sensor technologies continue to enhance the functionality and application scope of CW radars.
Doppler Radar is known for its ability to measure the velocity of moving objects by exploiting the Doppler effect. This type of radar has become indispensable in weather monitoring, air traffic control, and speed enforcement by law enforcement agencies. Doppler radar systems can filter out stationary objects and provide real-time data on movement, which is crucial for tracking storms, aircraft, and vehicles. Their precision and reliability have sustained their significant share in the radar market, especially in meteorological and aerospace sectors. However, Doppler radars typically require complex signal processing and face limitations in detecting stealth technology compared to bistatic systems.
Frequency-Modulated Continuous-Wave Radar (Fm-Cw Radar) offers the dual advantages of measuring both range and velocity, making it particularly useful in applications requiring high resolution at short to medium distances, such as automotive parking sensors, industrial level measurement, and robotics. Fm-Cw radar systems are prized for their low power consumption and compact design, which enables their integration into consumer electronics and automated systems. Although their penetration in defense applications is limited compared to bistatic or monopulse radars, their versatility continues to boost their market share in commercial sectors.
Monopulse Radar is highly regarded for its ability to determine the angle of a target accurately within a single pulse, making it a preferred choice for missile guidance, air defense, and precision tracking applications. This radar type excels in environments with heavy electronic interference due to its inherent resistance to jamming and signal spoofing. Despite these technological advantages, monopulse radar systems are generally more expensive and complex to deploy, which limits their use primarily to advanced military and aerospace applications rather than broad commercial adoption.
On the basis of application, the global radars market is bifurcated into military, commercial, and others.
Military applications dominate the Radars Market due to the critical role radar systems play in national defense, surveillance, and security operations. Military radars are essential for threat detection, target tracking, missile guidance, and battlefield surveillance. With rising geopolitical tensions and increasing defense budgets worldwide, there is a significant demand for advanced radar technologies that offer enhanced accuracy, range, and resistance to electronic warfare tactics. Innovations such as bistatic and multistatic radar configurations, along with integration of artificial intelligence and machine learning for real-time threat analysis, further bolster the adoption of radar systems in military applications. The need for effective airspace monitoring, border security, and maritime surveillance continues to drive robust investments in this segment, making it the largest and most lucrative application area in the radar market.
Commercial applications of radar technology are also expanding but remain secondary to military use in terms of market share and revenue generation. Commercial radars are widely used in sectors such as automotive, aviation, weather forecasting, and industrial automation. For example, radar systems enable collision avoidance in vehicles, air traffic control in airports, and precise weather monitoring to predict storms and climate events. Additionally, the commercial sector is exploring radar integration with smart city infrastructure, port and harbor management, and logistics for improved operational efficiency. While the commercial application segment experiences steady growth fueled by technological advancements and rising safety regulations, it is still overshadowed by the military segment due to the scale and criticality of defense-related radar deployments.
North America dominates the global Radars Market, primarily due to its highly developed defense, aerospace, and security sectors. The United States accounts for the largest share, driven by continuous investments in military radar systems for missile detection, air defense, and battlefield surveillance. Modernization programs by the U.S. Department of Defense, including programs for next-generation airborne early warning systems and ground surveillance radars, are significantly fueling demand. Moreover, radar applications in civil aviation, weather forecasting (via NOAA), autonomous vehicles, and space missions by NASA further expand the radar technology footprint. Canada contributes through investments in airspace monitoring, Arctic surveillance, and coastal defense systems, reinforcing North America’s leadership in both civilian and military radar deployments.
Asia-Pacific is witnessing the fastest growth in the radars market due to rising geopolitical tensions, increasing defense spending, and rapid technological advancements. China is aggressively expanding its radar systems across military domains, with a focus on anti-stealth, hypersonic tracking, and border surveillance radars. India is strengthening its radar infrastructure across land, air, and maritime applications, backed by the ‘Make in India’ initiative, which boosts domestic radar manufacturing. Japan and South Korea are investing heavily in radar technologies for ballistic missile defense, as well as automotive radar systems for advanced driver assistance. Additionally, the growing need for weather monitoring, disaster response, and aviation safety is prompting the deployment of civil and dual-use radar platforms across the region.
Europe holds a substantial share in the radar market, characterized by widespread defense collaborations through NATO and investments in indigenous radar technologies. Countries like the United Kingdom, Germany, France, and Italy are at the forefront, deploying radar systems for military surveillance, ballistic missile defense, and naval operations. The region also focuses on radar applications in air traffic control, meteorology, and environmental monitoring, particularly with advancements in Doppler radar and phased-array systems. EU-funded initiatives and public-private partnerships are actively encouraging innovation in radar-based automotive and infrastructure monitoring technologies. Europe's strong manufacturing base, with companies like Thales Group and Leonardo, ensures robust production and export capabilities.
Latin America is an emerging market for radar systems, led by countries like Brazil, Mexico, and Argentina. The regional growth is driven by increased demand for border surveillance, air traffic control modernization, and meteorological radars. Brazil, being the largest economy in the region, is investing in 3D radar technologies for defense and aerospace, along with partnerships for satellite-based radar imaging. In Mexico and other nations, radar systems are being adopted for port security, disaster management, and transportation safety. However, economic constraints and reliance on imports for high-end systems may limit faster adoption. Still, strategic collaborations and foreign investments are gradually building radar capabilities in the region.
Middle East and Africa are witnessing steady growth in the radar market, primarily driven by military modernization and national security initiatives. Countries such as Israel, Saudi Arabia, and the United Arab Emirates are procuring advanced radar systems for integrated air defense, border surveillance, and maritime security. Israel leads the region in radar innovation, with companies specializing in multi-mission and counter-drone radar systems. In Africa, radar deployment is slowly increasing, particularly for airport security, maritime domain awareness, and early warning systems for natural disasters. Challenges such as limited infrastructure and budget constraints affect broader adoption, but international aid, defense grants, and joint projects are supporting capacity building.
The report provides an in-depth analysis of companies operating in the radars market, including their geographic presence, business strategies, product offerings, market share, and recent developments. This analysis helps to understand market competition.
Some of the major players in the global radars market include:
By Types
By Application
By Region
1 Introduction to Research & Analysis Reports 1.1 Radars Market Definition 1.2 Market Segments 1.2.1 Market by Type 1.2.2 Market by Application 1.3 Global Radars Market Overview 1.4 Features & Benefits of This Report 1.5 Methodology & Sources of Information 1.5.1 Research Methodology 1.5.2 Research Process 1.5.3 Base Year 1.5.4 Report Assumptions & Caveats 2 Global Radars Overall Market Size 2.1 Global Radars Market Size: 2021 VS 2028 2.2 Global Radars Market Size, Prospects & Forecasts: 2017-2028 2.3 Key Market Trends, Opportunity, Drivers and Restraints 2.3.1 Market Opportunities & Trends 2.3.2 Market Drivers 2.3.3 Market Restraints 3 Company Landscape 3.1 Top Radars Players in Global Market 3.2 Top Global Radars Companies Ranked by Revenue 3.3 Global Radars Revenue by Companies 3.4 Top 3 and Top 5 Radars Companies in Global Market, by Revenue in 2021 3.5 Global Companies Radars Product Type 3.6 Tier 1, Tier 2 and Tier 3 Radars Players in Global Market 3.6.1 List of Global Tier 1 Radars Companies 3.6.2 List of Global Tier 2 and Tier 3 Radars Companies 4 Market Sights by Product 4.1 Overview 4.1.1 by Type - Global Radars Market Size Markets, 2021 & 2028 4.1.2 Bistatic Radar 4.1.3 Continuous-Wave Radar 4.1.4 Doppler Radar 4.1.5 Fm-Cw Radar 4.1.6 Monopulse Radar 4.1.7 Others 4.2 By Type - Global Radars Revenue & Forecasts 4.2.1 By Type - Global Radars Revenue, 2017-2022 4.2.2 By Type - Global Radars Revenue, 2023-2028 4.2.3 By Type - Global Radars Revenue Market Share, 2017-2028 5 Sights by Application 5.1 Overview 5.1.1 By Application - Global Radars Market Size, 2021 & 2028 5.1.2 Military 5.1.3 Commercial 5.1.4 Others 5.2 By Application - Global Radars Revenue & Forecasts 5.2.1 By Application - Global Radars Revenue, 2017-2022 5.2.2 By Application - Global Radars Revenue, 2023-2028 5.2.3 By Application - Global Radars Revenue Market Share, 2017-2028 6 Sights by Region 6.1 By Region - Global Radars Market Size, 2021 & 2028 6.2 By Region - Global Radars Revenue & Forecasts 6.2.1 By Region - Global Radars Revenue, 2017-2022 6.2.2 By Region - Global Radars Revenue, 2023-2028 6.2.3 By Region - Global Radars Revenue Market Share, 2017-2028 6.3 North America 6.3.1 By Country - North America Radars Revenue, 2017-2028 6.3.2 US Radars Market Size, 2017-2028 6.3.3 Canada Radars Market Size, 2017-2028 6.3.4 Mexico Radars Market Size, 2017-2028 6.4 Europe 6.4.1 By Country - Europe Radars Revenue, 2017-2028 6.4.2 Germany Radars Market Size, 2017-2028 6.4.3 France Radars Market Size, 2017-2028 6.4.4 U.K. Radars Market Size, 2017-2028 6.4.5 Italy Radars Market Size, 2017-2028 6.4.6 Russia Radars Market Size, 2017-2028 6.4.7 Nordic Countries Radars Market Size, 2017-2028 6.4.8 Benelux Radars Market Size, 2017-2028 6.5 Asia 6.5.1 By Region - Asia Radars Revenue, 2017-2028 6.5.2 China Radars Market Size, 2017-2028 6.5.3 Japan Radars Market Size, 2017-2028 6.5.4 South Korea Radars Market Size, 2017-2028 6.5.5 Southeast Asia Radars Market Size, 2017-2028 6.5.6 India Radars Market Size, 2017-2028 6.6 South America 6.6.1 By Country - South America Radars Revenue, 2017-2028 6.6.2 Brazil Radars Market Size, 2017-2028 6.6.3 Argentina Radars Market Size, 2017-2028 6.7 Middle East & Africa 6.7.1 By Country - Middle East & Africa Radars Revenue, 2017-2028 6.7.2 Turkey Radars Market Size, 2017-2028 6.7.3 Israel Radars Market Size, 2017-2028 6.7.4 Saudi Arabia Radars Market Size, 2017-2028 6.7.5 UAE Radars Market Size, 2017-2028 7 Players Profiles 7.1 Lockheed Martin 7.1.1 Lockheed Martin Corporate Summary 7.1.2 Lockheed Martin Business Overview 7.1.3 Lockheed Martin Radars Major Product Offerings 7.1.4 Lockheed Martin Radars Revenue in Global Market (2017-2022) 7.1.5 Lockheed Martin Key News 7.2 Northrop Grumman 7.2.1 Northrop Grumman Corporate Summary 7.2.2 Northrop Grumman Business Overview 7.2.3 Northrop Grumman Radars Major Product Offerings 7.2.4 Northrop Grumman Radars Revenue in Global Market (2017-2022) 7.2.5 Northrop Grumman Key News 7.3 Raytheon 7.3.1 Raytheon Corporate Summary 7.3.2 Raytheon Business Overview 7.3.3 Raytheon Radars Major Product Offerings 7.3.4 Raytheon Radars Revenue in Global Market (2017-2022) 7.3.5 Raytheon Key News 7.4 Thales 7.4.1 Thales Corporate Summary 7.4.2 Thales Business Overview 7.4.3 Thales Radars Major Product Offerings 7.4.4 Thales Radars Revenue in Global Market (2017-2022) 7.4.5 Thales Key News 7.5 BAE Systems 7.5.1 BAE Systems Corporate Summary 7.5.2 BAE Systems Business Overview 7.5.3 BAE Systems Radars Major Product Offerings 7.5.4 BAE Systems Radars Revenue in Global Market (2017-2022) 7.5.5 BAE Systems Key News 8 Conclusion 9 Appendix 9.1 Note 9.2 Examples of Clients 9.3 Disclaimer
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