Europe Drones Market Size, Share, Growth, Trends, and Industry Analysis: By Wing Type, By Drone Type, By Application, and Country Forecast 2020-2031
Europe Drones Market size was valued at US$ 19,376.4 million in 2024 and is projected to reach US$ 40,995.8 million by 2031 at a CAGR of 11.3% from 2025-2031. The market refers to the global industry encompassing the design, manufacturing, sale, and application of unmanned aerial vehicles (UAVs), commonly known as drones, for a wide range of commercial, industrial, and governmental uses.
The market is primarily driven by the growing use of drones for infrastructure inspection and industrial monitoring. As European nations expand renewable energy, smart transportation, and utility projects, drones offer a cost-effective, safer, and faster solution for inspecting critical assets like bridges, wind turbines, and pipelines. This demand is further supported by environmental regulations promoting low-impact technologies and drone adoption in sectors like agriculture, logistics, defence, and public safety. A major trend shaping the market is the rise of BVLOS (Beyond Visual Line of Sight) operations, made feasible by AI, 5G, and real-time analytics, enabling autonomous long-range applications. Integration with smart city platforms and the rise of drone-as-a-service (DaaS) models are also accelerating use across urban and industrial spaces.
Opportunities abound in environmental monitoring and precision agriculture, aligned with EU sustainability goals and funding programs. However, complex and evolving regulations remain a restraint, especially for cross-border UAV operations and BVLOS missions. Additional challenges include limited battery life, cybersecurity risks, and high equipment costs. Despite these, the region’s policy support, funding, and technological maturity position Europe as a key hub for drone innovation and market expansion.
Based on the wing type
In the market, Rotary-Wing Drones hold the largest market share due to their superior maneuverability, vertical takeoff and landing (VTOL) capabilities, and suitability for confined or complex environments. These drones are widely used across commercial, agricultural, infrastructure inspection, and public safety sectors, offering flexible deployment and ease of use, especially in urban and semi-urban settings. Their multi-rotor configuration supports precise hovering and stability, which is essential for surveillance, mapping, and delivery applications. While Fixed-Wing Drones are gaining traction in long-range surveillance and agricultural monitoring due to their endurance and speed, they currently hold a smaller share due to operational limitations in dense or dynamic areas.
Based on the drone type
Based on drone type, Aerial Drones hold the largest market share in the market. Their extensive adoption across sectors like agriculture, logistics, defense, environmental monitoring, and construction drives their dominance. Aerial drones offer unmatched versatility, rapid deployment, and the ability to cover large areas efficiently, making them a preferred tool for surveillance, mapping, photography, and delivery services. The rise in smart farming practices and infrastructure projects has further fueled their usage. In contrast, Underwater Drones currently hold the smallest share, primarily due to limited applications, higher costs, and specialized deployment needs in marine research, offshore oil exploration, and naval operations.
Based on the application
Based on application, the Military and Defence segment holds the largest market share in the market. This dominance stems from long-standing investments in surveillance, reconnaissance, border security, and combat drone development. European countries are increasingly adopting drones to modernize their defence forces, enhance situational awareness, and reduce human risk in critical operations. High-endurance drones with advanced imaging and targeting capabilities are in strong demand. Conversely, Healthcare holds the smallest share, as drone adoption in this sector is still emerging, used mainly for pilot projects like emergency medicine delivery, organ transport, and vaccine distribution in remote areas.
The key driver of the market is the rapid adoption of drones in infrastructure inspection and industrial applications. European countries are heavily investing in smart infrastructure, renewable energy, and transportation networks, which require regular, cost-effective monitoring for safety and maintenance. Drones equipped with advanced imaging, LiDAR, and thermal sensors provide efficient inspection of bridges, power lines, wind turbines, and pipelines, areas where manual methods are riskier and more expensive. This efficiency is propelling demand from both public and private sectors across the region. Additionally, stringent environmental regulations are pushing industries to adopt low-impact monitoring tools like drones. Beyond infrastructure, other supporting drivers include increasing use of drones in precision agriculture, the growing popularity of drone delivery services, defense modernization, and expanding use in emergency response and surveillance. Government initiatives promoting UAV innovation and relaxed regulations by the European Union Aviation Safety Agency (EASA) are also accelerating commercial drone adoption across multiple sectors.
The major restraint in the market is the complex and evolving regulatory environment that can delay or limit drone deployment. Despite efforts by the European Union Aviation Safety Agency (EASA) to standardize drone laws across member countries, challenges remain in cross-border operations, airspace integration, privacy compliance, and safety certification. These hurdles make it difficult for drone service providers and manufacturers to scale operations consistently throughout Europe. Additionally, limitations on beyond visual line of sight (BVLOS) flights, crucial for logistics, inspection, and agriculture, restrict the full potential of drones in commercial applications. Other secondary restraints include high upfront costs for industrial-grade drones, limited battery life affecting flight duration, concerns over cybersecurity in connected UAVs, and public hesitation due to privacy and noise issues. These factors collectively temper market expansion, particularly in sectors where large-scale or autonomous operations are critical to achieving ROI.
A major opportunity in the market lies in the accelerating adoption of drones for environmental monitoring and smart agriculture, supported by EU sustainability goals and green funding. With increasing focus on climate change, biodiversity, and precision farming, drones are being deployed to monitor crop health, track deforestation, detect wildfires, and measure emissions. These use cases are gaining traction due to their cost-efficiency, speed, and ability to access difficult terrains. The EU’s Common Agricultural Policy (CAP) and Horizon Europe programs are also funding drone innovation for land management and digital farming. In parallel, the growing demand for last-mile drone delivery, infrastructure inspection, and public safety surveillance, especially in smart city projects, provides scalable growth avenues. Rising investments in 5G, AI, and BVLOS-enabling technologies further enhance the capabilities of drones, making them integral to future urban mobility and industrial automation. This confluence of tech readiness and policy backing creates fertile ground for rapid expansion.
One key trend in the market is the rapid expansion of Beyond Visual Line of Sight (BVLOS) operations, enabled by advances in AI, 5G connectivity, and real-time data processing. BVLOS capabilities are unlocking new applications in logistics, agriculture, energy, and infrastructure by allowing drones to operate autonomously over long distances. This is especially crucial in Europe, where regulatory agencies like EASA are creating unified frameworks to standardize drone traffic management (UTM) across borders. Another prominent trend is the integration of drones with smart city ecosystems, where they are used for traffic monitoring, emergency response, and environmental assessment. The rise of drone-as-a-service (DaaS) models is also simplifying adoption for sectors like construction and utilities. Moreover, demand for green and electric-powered drones is increasing to align with EU’s carbon neutrality targets. Together, these trends are reshaping the drone landscape, positioning Europe as a global leader in drone innovation and regulation.
Report Benchmarks |
Details |
Market Size in 2024 |
US$ 19,376.4 million |
Market Size in 2031 |
US$ 40,995.8 million |
By Wing Type |
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By Drone Type |
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By Application |
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According to a PBI Analyst, the market is witnessing robust growth, driven by increasing adoption across infrastructure, agriculture, logistics, and public safety sectors. Regulatory advancements by the European Union Aviation Safety Agency (EASA) are fostering a more harmonized and scalable ecosystem, while innovations in BVLOS operations, AI integration, and 5G connectivity are enabling drones to perform more complex and long-range missions. The emergence of drone-as-a-service (DaaS) models is also making adoption more accessible for SMEs. However, the market still faces challenges like stringent compliance requirements and high initial costs. Overall, Europe is positioned as a leading global hub for drone innovation and deployment.
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Europe drones market size was valued at US$ 19,376.4 million in 2024 and is projected to reach US$ 40,995.8 million by 2031 growing at a CAGR of 11.3%.
Increasing adoption across defence, agriculture, and construction sectors is driving drone usage, supported by favorable EU drone regulations.
Integration of AI, BVLOS capabilities, and drone-as-a-service models offer major growth avenues across logistics and surveillance.
There's a growing trend toward autonomous drones, green propulsion systems, and government-funded UAM (urban air mobility) initiatives.
1. Executive Summary |
2. Europe Drones Market Introduction |
2.1. Europe Drones Market Taxonomy |
2.2. Europe Drones Market Definitions |
2.2.1. By Wing Type |
2.2.2. By Drone Type |
2.2.3. By Application |
3. Europe Drones Market Dynamics |
3.1. Drivers |
3.2. Restraints |
3.3. Opportunities/Unmet Needs of the Market |
3.4. Trends |
3.5. Europe Drones Market Dynamic Factors - Impact Analysis |
3.6. Europe Drones Market Competitive Landscape |
4. Europe Drones Market Analysis, 2020-2024 and Forecast, 2025-2031 |
4.1. Market Analysis,2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
4.2. Year-over-Year (Y-o-Y) Growth Analysis (%) |
4.3. Market Opportunity Analysis |
5. Europe Drones Market, By Wing Type, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
5.1. Fixed-Wing Drones |
5.1.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
5.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
5.1.3. Market Opportunity Analysis |
5.2. Rotary-Wing Drones |
5.2.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
5.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
5.2.3. Market Opportunity Analysis |
6. Europe Drones Market Forecast, By Drone Type, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
6.1. Aerial Drones |
6.1.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
6.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
6.1.3. Market Opportunity Analysis |
6.2. Marine Drones |
6.2.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
6.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
6.2.3. Market Opportunity Analysis |
6.3. Underwater Drones |
6.3.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
6.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
6.3.3. Market Opportunity Analysis |
6.4. Land Drones |
6.4.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
6.4.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
6.4.3. Market Opportunity Analysis |
7. Europe Drones Market, By Application, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
7.1. Agriculture |
7.1.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
7.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
7.1.3. Market Opportunity Analysis |
7.2. Military and Defense |
7.2.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
7.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
7.2.3. Market Opportunity Analysis |
7.3. Construction |
7.3.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
7.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
7.3.3. Market Opportunity Analysis |
7.4. Entertainment |
7.4.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
7.4.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
7.4.3. Market Opportunity Analysis |
7.5. Healthcare |
7.5.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
7.5.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
7.5.3. Market Opportunity Analysis |
7.6. Land Inspection and Survey |
7.6.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
7.6.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
7.6.3. Market Opportunity Analysis |
7.7. Others |
7.7.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
7.7.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
7.7.3. Market Opportunity Analysis |
8. Europe Drones Market Forecast, By Country, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.1. Germany |
8.1.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
8.1.3. Market Opportunity Analysis |
8.2. France |
8.2.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
8.2.3. Market Opportunity Analysis |
8.3. UK |
8.3.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
8.3.3. Market Opportunity Analysis |
8.4. Spain |
8.4.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.4.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
8.4.3. Market Opportunity Analysis |
8.5. Italy |
8.5.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.5.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
8.5.3. Market Opportunity Analysis |
8.6. Russia |
8.6.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.6.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
8.6.3. Market Opportunity Analysis |
8.7. Poland |
8.7.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.7.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
8.7.3. Market Opportunity Analysis |
8.8. Rest of Europe |
8.8.1. Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
8.8.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%) |
8.8.3. Market Opportunity Analysis |
8.9. Europe Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application and Country, 2025-2031 |
9. Germany Drones Market Analysis,2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
9.1. By Wing Type Analysis 2020-2024 and Forecast 2025-2031by Revenue (US$ Mn), Y-o-Y Growth (%), and Market Share (%) |
9.1.1. Fixed-Wing Drones |
9.1.2. Rotary-Wing Drones |
9.2. Drone Type Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
9.2.1. Aerial Drones |
9.2.2. Marine Drones |
9.2.3. Underwater Drones |
9.2.4. Land Drones |
9.3. Application Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
9.3.1. Agriculture |
9.3.2. Military and Defense |
9.3.3. Construction |
9.3.4. Entertainment |
9.3.5. Healthcare |
9.3.6. Land Inspection and Survey |
9.3.7. Others |
9.4. Germany Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application, and Country, 2025-2031 |
9.5. Germany Drones Market Dynamics Trends |
10. France Drones Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
10.1. By Wing Type Analysis 2020-2024 and Forecast 2025-2031by Revenue (US$ Mn), Y-o-Y Growth (%), and Market Share (%) |
10.1.1. Fixed-Wing Drones |
10.1.2. Rotary-Wing Drones |
10.2. Drone Type Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
10.2.1. Aerial Drones |
10.2.2. Marine Drones |
10.2.3. Underwater Drones |
10.2.4. Land Drones |
10.3. Application Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
10.3.1. Agriculture |
10.3.2. Military and Defense |
10.3.3. Construction |
10.3.4. Entertainment |
10.3.5. Healthcare |
10.3.6. Land Inspection and Survey |
10.3.7. Others |
10.4. France Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application, and Country, 2025-2031 |
10.5. France Drones Market Dynamics Trends |
11. UK Drones Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
11.1. By Wing Type Analysis 2020-2024 and Forecast 2025-2031by Revenue (US$ Mn), Y-o-Y Growth (%), and Market Share (%) |
11.1.1. Fixed-Wing Drones |
11.1.2. Rotary-Wing Drones |
11.2. Drone Type Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
11.2.1. Aerial Drones |
11.2.2. Marine Drones |
11.2.3. Underwater Drones |
11.2.4. Land Drones |
11.3. Application Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
11.3.1. Agriculture |
11.3.2. Military and Defense |
11.3.3. Construction |
11.3.4. Entertainment |
11.3.5. Healthcare |
11.3.6. Land Inspection and Survey |
11.3.7. Others |
11.4. UK Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application, and Country, 2025-2031 |
11.5. UK Drones Market Dynamics Trends |
12. Spain Drones Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
12.1. By Wing Type Analysis 2020-2024 and Forecast 2025-2031by Revenue (US$ Mn), Y-o-Y Growth (%), and Market Share (%) |
12.1.1. Fixed-Wing Drones |
12.1.2. Rotary-Wing Drones |
12.2. Drone Type Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
12.2.1. Aerial Drones |
12.2.2. Marine Drones |
12.2.3. Underwater Drones |
12.2.4. Land Drones |
12.3. Application Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
12.3.1. Agriculture |
12.3.2. Military and Defense |
12.3.3. Construction |
12.3.4. Entertainment |
12.3.5. Healthcare |
12.3.6. Land Inspection and Survey |
12.3.7. Others |
12.4. Spain Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application, and Country, 2025-2031 |
12.5. Spain Drones Market Dynamics Trends |
13. Italy Drones Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
13.1. By Wing Type Analysis 2020-2024 and Forecast 2025-2031by Revenue (US$ Mn), Y-o-Y Growth (%), and Market Share (%) |
13.1.1. Fixed-Wing Drones |
13.1.2. Rotary-Wing Drones |
13.2. Drone Type Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
13.2.1. Aerial Drones |
13.2.2. Marine Drones |
13.2.3. Underwater Drones |
13.2.4. Land Drones |
13.3. Application Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
13.3.1. Agriculture |
13.3.2. Military and Defense |
13.3.3. Construction |
13.3.4. Entertainment |
13.3.5. Healthcare |
13.3.6. Land Inspection and Survey |
13.3.7. Others |
13.4. Italy Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application, and Country, 2025-2031 |
13.5. Italy Drones Market Dynamics Trends |
14. Russia Drones Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
14.1. By Wing Type Analysis 2020-2024 and Forecast 2025-2031by Revenue (US$ Mn), Y-o-Y Growth (%), and Market Share (%) |
14.1.1. Fixed-Wing Drones |
14.1.2. Rotary-Wing Drones |
14.2. Drone Type Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
14.2.1. Aerial Drones |
14.2.2. Marine Drones |
14.2.3. Underwater Drones |
14.2.4. Land Drones |
14.3. Application Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
14.3.1. Agriculture |
14.3.2. Military and Defense |
14.3.3. Construction |
14.3.4. Entertainment |
14.3.5. Healthcare |
14.3.6. Land Inspection and Survey |
14.3.7. Others |
14.4. Russia Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application, and Country, 2025-2031 |
14.5. Russia Drones Market Dynamics Trends |
15. Poland Drones Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
15.1. By Wing Type Analysis 2020-2024 and Forecast 2025-2031by Revenue (US$ Mn), Y-o-Y Growth (%), and Market Share (%) |
15.1.1. Fixed-Wing Drones |
15.1.2. Rotary-Wing Drones |
15.2. Drone Type Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
15.2.1. Aerial Drones |
15.2.2. Marine Drones |
15.2.3. Underwater Drones |
15.2.4. Land Drones |
15.3. Application Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
15.3.1. Agriculture |
15.3.2. Military and Defense |
15.3.3. Construction |
15.3.4. Entertainment |
15.3.5. Healthcare |
15.3.6. Land Inspection and Survey |
15.3.7. Others |
15.4. Poland Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application, and Country, 2025-2031 |
15.5. Poland Drones Market Dynamics Trends |
16. Rest of Europe Drones Market Analysis, 2020-2024 and Forecast, 2025-2031 (Revenue, US$ Mn) |
16.1. By Wing Type Analysis 2020-2024 and Forecast 2025-2031by Revenue (US$ Mn), Y-o-Y Growth (%), and Market Share (%) |
16.1.1. Fixed-Wing Drones |
16.1.2. Rotary-Wing Drones |
16.2. Drone Type Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
16.2.1. Aerial Drones |
16.2.2. Marine Drones |
16.2.3. Underwater Drones |
16.2.4. Land Drones |
16.3. Application Analysis 2020-2024 and Forecast 2025-2031 by Revenue (US$ Mn), Y-o-Y Growth (%) and Market Share (%) |
16.3.1. Agriculture |
16.3.2. Military and Defense |
16.3.3. Construction |
16.3.4. Entertainment |
16.3.5. Healthcare |
16.3.6. Land Inspection and Survey |
16.3.7. Others |
16.4. Rest of Europe Drones Market - Opportunity Analysis Index, By Wing Type, Drone Type, Application, and Country, 2025-2031 |
16.5. Rest of Europe Drones Market Dynamics Trends |
17. Competitive Landscape |
17.1. Strategic Dashboard of Top Market Players |
17.2. Company Profiles (Introduction, Financial Analysis, Drone Type& Service Offerings, Key Developments, Strategies, and SWOT Analysis) |
17.2.1. Delair SAS |
17.2.2. Parrot Drones SAS |
17.2.3. Pix4D SA |
17.2.4. AltiGator |
17.2.5. Azur Drones |
17.2.6. Embention |
17.2.7. Tekever |
17.2.8. Boreal UAS |
17.2.9. BAE Systems |
17.2.10. Saab Group |
17.2.11. The Boeing Company |
17.2.12. Escadrone |
18. Research Methodology |
19. Key Assumptions and Acronyms |
Key Market Players