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The future of the global autonomous aircraft market looks promising with opportunities in commercial aircraft, combat & ISR, cargo & delivery aircraft, passenger air vehicle, personal air vehicle, air medical services and other segments. The global autonomous aircraft market is expected to grow with a CAGR of 17%-19% from 2021 to 2026. The major drivers for this market are increase in demand for cost-effective aircraft operation, surge in autonomy to reduce human errors, and increased cost savings. 
 
Emerging trends, which have a direct impact on the dynamics of the industry, include rise in adoption of artificial intelligence in autonomous system and high investment in cargo and delivery of goods. 
 
A total of xx figures / charts and xx tables are provided in this more than 150 page report to help in your business decisions. Sample figures with some insights are shown below. To learn the scope, benefits, companies researched, and other details of the global autonomous aircraft market report, please download the report brochure.

 
autonomous aircraft market


autonomous aircraft market


autonomous aircraft market


autonomous aircraft market

 
The study includes a forecast for the global autonomous aircraft market by technology, component, end use and region, as follows:
 
By Technology [Value ($ Million) from 2015 to 2026]:
  • Increasingly Autonomous
  • Fully Autonomous
By Component [Value ($ Million) from 2015 to 2026]: 
  • Flight Management Computers
  • Air Data Inertial Reference Units
  • Sensors
  • Actuation Systems
  • Software
  • Intelligent Servos
  • Cameras
  • Radars & Transponders
  • Propulsion Systems
By End Use [Value ($ Million) from 2015 to 2026]:
  • Commercial Aircraft
  • Combat & ISR
  • Cargo & Delivery Aircraft
  • Passenger Air Vehicle
  • Personal Air Vehicle
  • Air Medical Services
  • Others (Agriculture, Construction, Survey and Film & Photography, among others)
By Region [Value ($ Million) from 2015 to 2026]:
  • América del norte
  • Estados Unidos
  • Canadá
  • México
  • Europa
  • Alemania
  • Reino Unido
  • APAC
  • Porcelana
  • India
  • Japón
  • FILA
  • Middle East
  • Brasil
Some of the autonomous aircraft companies profiled in this report include The Boeing Company, Airbus SE, Northrop Grumman Corporation, Textron Inc., Lockheed Martin, Elbit Systems and BAE Systems PLC.
 
Lucintel forecasts that software will remain the largest segment and it is also expected to witness the highest growth over the forecast period due to the rise in the software for real-time data and efficient operation and is used to control all the operations of an unmanned vehicle. 
 
Within the global autonomous aircraft market, the commercial aircraft segment is expected to witness the highest growth over the forecast period due to the use of the aircraft in urban areas for public transportation and the current commercial aircraft are installed with autonomy components that make them increasingly autonomous. 
 
North America is expected to remain the largest market and witness the highest growth rate over the forecast period due to the increasing investment in R&D, growing number of companies and robust development in the technologies. 
 
 
Features of the Global Autonomous aircraft Market
 
  • Market Size Estimates: Global autonomous aircraft market size estimation in terms of value ($M) shipment.
  • Trend and Forecast Analysis: Market trends (2015-2021) and forecast (2021-2026) by various segments.
  • Segmentation Analysis: Global autonomous aircraft market size by various segments, such as by technology, component and end use in terms of value.
  • Regional Analysis: Global autonomous aircraft market breakdown by North America, Europe, Asia Pacific, and Rest of the World.
  • Growth Opportunities: Analysis of growth opportunities in different by technology, component, end use and regions for the global autonomous aircraft market.
  • Strategic Analysis: This includes M&A, new product development, and competitive landscape of the global autonomous aircraft market.
  • Análisis de la intensidad competitiva de la industria basada en el modelo de cinco fuerzas de Porter.
 
 
Este informe responde después de 11 preguntas clave

  Q.1 What are some of the most promising growth opportunities for the global autonomous aircraft market by technology (increasingly autonomous and fully autonomous), component (flight management computers, air data inertial reference units, sensors, actuation systems, software, intelligent servos, cameras, radars & transponders and propulsion systems), end use (commercial aircraft, combat & ISR, cargo & delivery aircraft, passenger air vehicles, personal air vehicles, air medical services, and others) and region (North America, Europe, Asia Pacific, and the Rest of the World)?
Q.2 Which segments will grow at a faster pace and why?
Q.3 Which region will grow at a faster pace and why?
Q.4 What are the key factors affecting market dynamics? What are the drivers and challenges, and business risks in this market?
Q.5 What are the business risks and competitive threats in this market?
Q.6 What are the emerging trends in this market and the reasons behind them?
Q.7 What are some of the changing demands of customers in the market?
Q.8 What are the new developments in the market and which companies are leading these developments?
Q.9 Who are the major players in this market? What strategic initiatives are being taken by key players for business growth?
Q.10 What are some of the competing products in this market and how big of a threat do they pose for loss of market share by product substitution?
Q.11 What M & A activity has occurred in the last five years?

Report Scope
 
Key Features Description
Base Year for Estimation 2021
Trend Period
(Actual Estimates)
2015-2021
Forecast Period 2021-2026
Páginas 210
Market Representation / Units Revenue in US $ Million
Regional Scope North America (USA, Mexico, and Canada), Europe (Germany and United Kingdom), Asia (China, Japan, and India), and ROW (Middle East and Brazil)
Report Coverage Market Trends & Forecasts, Competitor Analysis, New Product Development, Company Expansion, Merger, Acquisitions & Joint Venture, and Company Profiling
Market segments Technology (Increasingly Autonomous And Fully Autonomous), Component (Flight Management Computers, Air Data Inertial Reference Units, Sensors, Actuation Systems, Software, Intelligent Servos, Cameras, Radars & Transponders And Propulsion Systems), End Use (Commercial Aircraft, Combat & ISR, Cargo & Delivery Aircraft, Passenger Air Vehicles, Personal Air Vehicles, Air Medical Services, And Others)
Customization 10% Customization without Any Additional Cost

Tabla de contenido
 
1. Executive Summary
 
2. Market Background and Classifications
2.1: Introduction, Background, and Classifications
2.2: Supply Chain
2.3: Industry Drivers and Challenges
 
3. Market Trends and Forecast Analysis from 2015 to 2026
3.1: Macroeconomic Trends and Forecast
3.2: Global Autonomous Aircraft market Trends and Forecast
3.3: Global Autonomous Aircraft market by Technology 
3.3.1: Increasingly Autonomous 
3.3.2: Fully Autonomous 
3.4: Global Autonomous Aircraft market by Component
3.4.1: Flight Management Computers 
3.4.2: Air Data Inertial Reference Units
3.4.3: Sensors
3.4.4: Actuation Systems 
3.4.5: Software
3.4.6: Intelligent Servos 
3.4.7: Cameras 
3.4.8: Radars & Transponders
3.4.9: Propulsion Systems
3.5: Global Autonomous Aircraft market by End Use 
3.5.1: Commercial Aircraft 
3.5.2: Combat & ISR
3.5.3: Cargo & Delivery Aircraft
3.5.4: Passenger Air Vehicles
3.5.5: Personal Air Vehicles
3.5.6: Air Medical Services
3.5.7: Others
 
4. Market Trends and Forecast Analysis by Region
4.1: Global Autonomous Aircraft Market by Region
4.2: North American Autonomous aircraft Market
4.2.1: Market by Technology: Increasingly Autonomous and Fully Autonomous
4.2.2: Market by Component: Flight Management Computers, Air Data Inertial Reference Units, Sensors, Actuation Systems, Software, Intelligent Servos, Cameras, Radars & Transponders and Propulsion Systems
4.2.3 Market by End Use: Commercial Aircraft, Combat & ISR, Cargo & Delivery Aircraft, Passenger Air Vehicles, Personal Air Vehicles, Air Medical Services, and Others
4.2.4: The US Autonomous Aircraft Market
4.2.5: Canadian Autonomous Aircraft Market
4.2.6: Mexican Autonomous Aircraft Market
4.3: European Autonomous Aircraft Market
4.3.1: Market by Technology: Increasingly Autonomous And Fully Autonomous
4.3.2: Market by Component: Flight Management Computers, Air Data Inertial Reference Units, Sensors, Actuation Systems, Software, Intelligent Servos, Cameras, Radars & Transponders And Propulsion Systems
4.3.3: Market by End Use: Commercial Aircraft, Combat & ISR, Cargo & Delivery Aircraft, Passenger Air Vehicles, Personal Air Vehicles, Air Medical Services, And Others
4.3.4: Autonomous Aircraft Market of the United Kingdom
4.3.5: German Autonomous Aircraft Market
4.4: APAC Autonomous Aircraft Market
4.4.1: Market by Technology: Increasingly Autonomous And Fully Autonomous
4.4.2: Market by Component: Flight Management Computers, Air Data Inertial Reference Units, Sensors, Actuation Systems, Software, Intelligent Servos, Cameras, Radars & Transponders And Propulsion Systems
4.4.3: Market by End Use: Commercial Aircraft, Combat & ISR, Cargo & Delivery Aircraft, Passenger Air Vehicles, Personal Air Vehicles, Air Medical Services, And Others
4.4.4: Chinese Autonomous Aircraft Market
4.4.5: Japanese Autonomous Aircraft Market
4.4.6: Indian Autonomous Aircraft Market
4.5: ROW Autonomous Aircraft Market
4.5.1: Market by Technology: Increasingly Autonomous And Fully Autonomous
4.5.2: Market by Component: Flight Management Computers, Air Data Inertial Reference Units, Sensors, Actuation Systems, Software, Intelligent Servos, Cameras, Radars & Transponders And Propulsion Systems
4.5.3: Market by End Use: Commercial Aircraft, Combat & ISR, Cargo & Delivery Aircraft, Passenger Air Vehicles, Personal Air Vehicles, Air Medical Services, And Others
4.5.4: Middle Eastern Autonomous Aircraft Market
4.5.5: Brazilian Autonomous Aircraft Market
 
5. Competitor Analysis
5.1: Product Portfolio Analysis
5.2: Market Share Analysis
5.3: Operational Integration
5.4: Geographical Reach
5.5: Porter’s Five Forces Analysis
 
6. Cost Structure Analysis
6.1: Raw Material Cost
6.2: Other Expenses
6.3: COGS
6.4: SG&A
6.5: EBITDA Margin
 
7. Growth Opportunities and Strategic Analysis
7.1: Growth Opportunity Analysis
7.1.1: Growth Opportunities for the Global Autonomous Aircraft market by Technology 
7.1.2: Growth Opportunities for the Global Autonomous Aircraft market by Component 
7.1.3: Growth Opportunities for the Global Autonomous Aircraft market by End Use
7.1.4: Growth Opportunities for the Global Automotive Aircraft Market by Region
7.2: Emerging Trends in the Global Autonomous Aircraft Market
7.3: Strategic Analysis
7.3.1: New Product Development
7.3.2: Capacity Expansion of the Global Autonomous Aircraft Market
7.3.3: Mergers, Acquisitions, and Joint Ventures in the Global Autonomous Aircraft Market
7.3.4: Certification and Licensing
 
8. Company Profiles of Leading Players
8.1: The Boeing Company 
8.2: Airbus SE 
8.3: Northrop Grumman Corporation 
8.4: Textron Inc.
8.5: Lockheed Martin 
8.6: Elbit Systems 
8.7: BAE Systems PLC 
 
.

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150 - page report
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  • Entrevistas en profundidad de los principales actores en este mercado
  • Investigación secundaria detallada de los estados financieros de los competidores y datos publicados 
  • Extensas búsquedas de obras publicadas, mercado e información de bases de datos relacionadas con noticias de la industria, comunicados de prensa de la empresa e intenciones de clientes
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Por lo tanto, Lucintel compila grandes cantidades de datos de numerosas fuentes, valida la integridad de esos datos y realiza un análisis exhaustivo. Lucintel luego organiza los datos, sus hallazgos y las ideas sobre un informe conciso diseñado para respaldar el proceso estratégico de toma de decisiones. La siguiente figura es una representación gráfica del proceso de investigación de Lucintel. 
 

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