AEROSPACE & DEFENCE
Global Hybrid Electric Aircraft Market - Industry Trends and Forecast to 2032
REPORT OVERVIEW
Global Hybrid Electric Aircraft Market, By Platform (Commercial Aircraft, Military Aircraft, Business Jets, and Urban Air Mobility), Operation (Pilot Operated and Autonomous), Engine Configuration (Turbine Engine with Electric Motor and Piston Engine with Electric Motor), Component (Aerostructures, Engine, Avionics, Electric Motor, Batteries and Fuel Cells, Generator, and Others), Lift Technology (CTOL, STOL, and VTOL), Region (North America, Europe, Asia-Pacific, South America, Middle East and Africa) – Industry Trends and Forecast to 2032.
Market Insights
Market Dynamics
- Rising fuel costs
- Technological advancements in electric propulsion
- Operational costs
- Weight and size of batteries
- Strategic partnerships and investment
- Infrastructure development
- Ensuring the reliability and performance
- Building public trust in the safety and environmental benefits of hybrid electric aircraft
SEGMENTATION
- Platform
- Commercial Aircraft
- Military Aircraft
- Business Jets
- Urban Air Mobility
- Operation
- Pilot Operated
- Autonomous
- Engine Configuration
- Turbine Engine with Electric Motor
- Piston Engine with Electric Motor
- Component
- Aerostructures
- Engine
- Avionics
- Electric Motor
- Batteries and Fuel Cells
- Generator
- Others
- Lift Technology
- CTOL
- STOL
- VTOL
- North America
- U.S.
- Canada
- Mexico
- Rest of North America
- Europe
- Germany
- U.K.
- France
- Italy
- Spain
- Russia
- The Netherlands
- Belgium
- Turkey
- Rest of Europe
- Asia-Pacific
- China
- India
- Japan
- South Korea
- Singapore
- Malaysia
- Australia
- Thailand
- Philippines
- Rest of Asia-Pacific
- South America
- Brazil
- Argentina
- Chile
- Colombia
- Rest of South America
- Middle East and Africa
- Kingdom of Saudi Arabia
- South Africa
- U.A.E.
- Egypt
- Rest of Middle East and Africa
KEY MARKET PLAYERS
- Airbus SE
- Lockheed Martin Corporation
- Archer Aviation Inc.
- Aura Aero
- Embraer S.A.
- Heart Aerospace
- The Boeing Company
- Northrop Grumman Corporation
- Joby Aviation, Inc.
- Honeywell International Inc.
Table OF CONTENTS
- SECTION 1 - INTRODUCTION
- 1.1 Taxonomy
- 1.2 Market Overview
- 1.3 Currency and Limitations
- 1.3.1 Currency
- 1.3.2 Limitations
- 1.4 Key Competitors
- SECTION 2 - RESEARCH METHODOLOGY
- 2.1 Research Approach
- 2.2 Data Collection and Validation
- 2.2.1 Secondary Research
- 2.2.2 Primary Research
- 2.3 Market Assessment
- 2.3.1 Market Size Estimation
- 2.3.2 Bottom-up Approach
- 2.3.3 Top-down Approach
- 2.3.4 Growth Forecast
- 2.4 Market Study Assumptions
- 2.5 Data Sources
- SECTION 3 - EXECUTIVE SUMMARY
- 3.1 Global Hybrid Electric Aircraft Market, by Platform
- 3.2 Global Hybrid Electric Aircraft Market, by Operation
- 3.3 Global Hybrid Electric Aircraft Market, by Engine Configuration
- 3.4 Global Hybrid Electric Aircraft Market, by Component
- 3.5 Global Hybrid Electric Aircraft Market, by Lift Technology
- 3.6 Global Hybrid Electric Aircraft Market, by Geography
- 3.7 Market Position Grid
- SECTION 4 - PREMIUM INSIGHTS
- 4.1 Regulatory Framework
- 4.1.1 Standards
- 4.1.2 Regulatory Landscape
- 4.2 Value Chain Analysis
- 4.3 Supply Chain Analysis
- 4.4 COVID-19 Impact
- 4.5 Russia-Ukraine War Impact
- 4.6 PORTER's Five Force Analysis
- 4.7 PESTLE Analysis
- 4.8 SWOT Analysis
- 4.9 Go to Market Strategy
- 4.10 Opportunity Orbit
- 4.11 Multivariate Modelling
- 4.12 Pricing Analysis
- SECTION 5 - MARKET DYNAMICS
- 5.1 Trends
- 5.1.1 Urban Air Mobility (UAM)
- 5.1.2 Aircrafts for regional and short-haul routes
- 5.1.3 Trend 3
- 5.2 Drivers
- 5.2.1 Rising fuel costs
- 5.2.2 Technological advancements in electric propulsion
- 5.2.3 Driver 3
- 5.2.4 Driver 4
- 5.3 Restraints
- 5.3.1 Operational costs
- 5.3.2 Weight and size of batteries
- 5.3.3 Restraint 3
- 5.4 Opportunities
- 5.4.1 Strategic partnerships and investment
- 5.4.2 Infrastructure development
- 5.4.3 Opportunity 3
- 5.4.4 Opportunity 4
- 5.5 Challenges
- 5.5.1 Ensuring the reliability and performance
- 5.5.2 Building public trust in the safety and environmental benefits of hybrid electric aircraft
- 5.5.3 Challenge 3
- SECTION 6 - GLOBAL HYBRID ELECTRIC AIRCRAFT MARKET, BY PLATFORM
- 6.1 Platform Summary
- 6.2 Market Attractive Index
- 6.3 Global Hybrid Electric Aircraft Market, by Platform (2019-2032)
- SECTION 7 - GLOBAL HYBRID ELECTRIC AIRCRAFT MARKET, BY OPERATION
- 7.1 Operation Summary
- 7.2 Market Attractive Index
- 7.3 Global Hybrid Electric Aircraft Market, by Operation (2019-2032)
- SECTION 8 - GLOBAL HYBRID ELECTRIC AIRCRAFT MARKET, BY ENGINE CONFIGURATION
- 8.1 Engine Configuration Summary
- 8.2 Market Attractive Index
- 8.3 Global Hybrid Electric Aircraft Market, by Engine Configuration (2019-2032)
- SECTION 9 - GLOBAL HYBRID ELECTRIC AIRCRAFT MARKET, BY COMPONENT
- 9.1 Component Summary
- 9.2 Market Attractive Index
- 9.3 Global Hybrid Electric Aircraft Market, by Component (2019-2032)
- SECTION 10 - GLOBAL HYBRID ELECTRIC AIRCRAFT MARKET, BY LIFT TECHNOLOGY
- 10.1 Lift Technology Summary
- 10.2 Market Attractive Index
- 10.3 Global Hybrid Electric Aircraft Market, by Lift Technology (2019-2032)
- SECTION 11 - GLOBAL HYBRID ELECTRIC AIRCRAFT MARKET, BY GEOGRAPHY
- 11.1 Regional Summary
- 11.2 Market Attractive Index
- 11.3 Global Hybrid Electric Aircraft Market, by Geography (2019-2032)
- SECTION 12 - NORTH AMERICA HYBRID ELECTRIC AIRCRAFT MARKET
- 12.1 North America Summary
- 12.2 Market Attractive Index
- 12.3 North America Hybrid Electric Aircraft Market, by Platform (2019-2032)
- 12.4 North America Hybrid Electric Aircraft Market, by Operation (2019-2032)
- 12.5 North America Hybrid Electric Aircraft Market, by Engine Configuration (2019-2032)
- 12.6 North America Hybrid Electric Aircraft Market, by Component (2019-2032)
- 12.7 North America Hybrid Electric Aircraft Market, by Lift Technology (2019-2032)
- 12.8 North America Hybrid Electric Aircraft Market, by Country (2019-2032)
- 12.8.1 U.S.
- 12.8.2 Canada
- 12.8.3 Mexico
- 12.8.4 Rest of North America
- SECTION 13 - EUROPE HYBRID ELECTRIC AIRCRAFT MARKET
- 13.1 Europe Summary
- 13.2 Market Attractive Index
- 13.3 Europe Hybrid Electric Aircraft Market, by Platform (2019-2032)
- 13.4 Europe Hybrid Electric Aircraft Market, by Operation (2019-2032)
- 13.5 Europe Hybrid Electric Aircraft Market, by Engine Configuration (2019-2032)
- 13.6 Europe Hybrid Electric Aircraft Market, by Component (2019-2032)
- 13.7 Europe Hybrid Electric Aircraft Market, by Lift Technology (2019-2032)
- 13.8 Europe Hybrid Electric Aircraft Market, by Country (2019-2032)
- 13.8.1 Germany
- 13.8.2 U.K.
- 13.8.3 France
- 13.8.4 Italy
- 13.8.5 Spain
- 13.8.6 Russia
- 13.8.7 The Netherlands
- 13.8.8 Belgium
- 13.8.9 Turkey
- 13.8.10 Rest of Europe
- SECTION 14 - ASIA-PACIFIC HYBRID ELECTRIC AIRCRAFT MARKET
- 14.1 Asia-Pacific Summary
- 14.2 Market Attractive Index
- 14.3 Asia-Pacific Hybrid Electric Aircraft Market, by Platform (2019-2032)
- 14.4 Asia-Pacific Hybrid Electric Aircraft Market, by Operation (2019-2032)
- 14.5 Asia-Pacific Hybrid Electric Aircraft Market, by Engine Configuration (2019-2032)
- 14.6 Asia-Pacific Hybrid Electric Aircraft Market, by Component (2019-2032)
- 14.7 Asia-Pacific Hybrid Electric Aircraft Market, by Lift Technology (2019-2032)
- 14.8 Asia-Pacific Hybrid Electric Aircraft Market, by Country (2019-2032)
- 14.8.1 China
- 14.8.2 India
- 14.8.3 Japan
- 14.8.4 South Korea
- 14.8.5 Singapore
- 14.8.6 Malaysia
- 14.8.7 Australia
- 14.8.8 Thailand
- 14.8.9 Philippines
- 14.8.10 Rest of Asia-Pacific
- SECTION 15 - SOUTH AMERICA HYBRID ELECTRIC AIRCRAFT MARKET
- 15.1 South America Summary
- 15.2 Market Attractive Index
- 15.3 South America Hybrid Electric Aircraft Market, by Platform (2019-2032)
- 15.4 South America Hybrid Electric Aircraft Market, by Operation (2019-2032)
- 15.5 South America Hybrid Electric Aircraft Market, by Engine Configuration (2019-2032)
- 15.6 South America Hybrid Electric Aircraft Market, by Component (2019-2032)
- 15.7 South America Hybrid Electric Aircraft Market, by Lift Technology (2019-2032)
- 15.8 South America Hybrid Electric Aircraft Market, by Country (2019-2032)
- 15.8.1 Brazil
- 15.8.2 Argentina
- 15.8.3 Chile
- 15.8.4 Colombia
- 15.8.5 Rest of South America
- SECTION 16 - MIDDLE EAST AND AFRICA HYBRID ELECTRIC AIRCRAFT MARKET
- 16.1 Middle East and Africa Summary
- 16.2 Market Attractive Index
- 16.3 Middle East and Africa Hybrid Electric Aircraft Market, by Platform (2019-2032)
- 16.4 Middle East and Africa Hybrid Electric Aircraft Market, by Operation (2019-2032)
- 16.5 Middle East and Africa Hybrid Electric Aircraft Market, by Engine Configuration (2019-2032)
- 16.6 Middle East and Africa Hybrid Electric Aircraft Market, by Component (2019-2032)
- 16.7 Middle East and Africa Hybrid Electric Aircraft Market, by Lift Technology (2019-2032)
- 16.8 Middle East and Africa Hybrid Electric Aircraft Market, by Country (2019-2032)
- 16.8.1 Kingdom of Saudi Arabia
- 16.8.2 South Africa
- 16.8.3 U.A.E.
- 16.8.4 Egypt
- 16.8.5 Rest of Middle East and Africa
- SECTION 17 - COMPANY SHARE ANALYSIS
- 17.1 Global Hybrid Electric Aircraft Market, Company Share Analysis
- 17.2 North America Hybrid Electric Aircraft Market, Company Share Analysis
- 17.3 Europe Hybrid Electric Aircraft Market, Company Share Analysis
- 17.4 Asia-Pacific Hybrid Electric Aircraft Market, Company Share Analysis
- SECTION 18 - COMPANY PROFILES
- 18.1 Airbus SE
- 18.1.1 Company Snapshot
- 18.1.2 Financial Overview
- 18.1.3 Product Portfolio
- 18.1.4 Recent Developments
- 18.2 Lockheed Martin Corporation
- 18.2.1 Company Snapshot
- 18.2.2 Financial Overview
- 18.2.3 Product Portfolio
- 18.2.4 Recent Developments
- 18.3 Archer Aviation Inc.
- 18.3.1 Company Snapshot
- 18.3.2 Financial Overview
- 18.3.3 Product Portfolio
- 18.3.4 Recent Developments
- 18.4 Aura Aero
- 18.4.1 Company Snapshot
- 18.4.2 Financial Overview
- 18.4.3 Product Portfolio
- 18.4.4 Recent Developments
- 18.5 Embraer S.A.
- 18.5.1 Company Snapshot
- 18.5.2 Financial Overview
- 18.5.3 Product Portfolio
- 18.5.4 Recent Developments
- 18.6 Heart Aerospace
- 18.6.1 Company Snapshot
- 18.6.2 Financial Overview
- 18.6.3 Product Portfolio
- 18.6.4 Recent Developments
- 18.7 The Boeing Company
- 18.7.1 Company Snapshot
- 18.7.2 Financial Overview
- 18.7.3 Product Portfolio
- 18.7.4 Recent Developments
- 18.8 Northrop Grumman Corporation
- 18.8.1 Company Snapshot
- 18.8.2 Financial Overview
- 18.8.3 Product Portfolio
- 18.8.4 Recent Developments
- 18.9 Joby Aviation, Inc.
- 18.9.1 Company Snapshot
- 18.9.2 Financial Overview
- 18.9.3 Product Portfolio
- 18.9.4 Recent Developments
- 18.10 Honeywell International Inc.
- 18.10.1 Company Snapshot
- 18.10.2 Financial Overview
- 18.10.3 Product Portfolio
- 18.10.4 Recent Developments
- SECTION 19 - RELATED REPORTS
- SECTION 20 - DISCLAIMER
RESEARCH METHODOLOGY
RESEARCH AND DATA COLLECTION
- Research articles published on Technium
- Science and MDPI
- Research publications by government approved associations and societies
DATA PRE-PROCESSING
The term "data pre-processing" refers to the collection of procedures and methods used to clean, modify, and make ready for analysis the raw data gathered during research and data collection. The completion of this phase is necessary to guarantee that the data are reliable, consistent, and appropriate for statistical analysis and other data-driven tasks. The data pre-processing ensures that the information gathered from research and data collection is comparable and expressed in standard units, by the integration of missing data pointers and algorithmic approaches.
MODELING AND FORECASTING
QUALITY ASSURANCE AND OUTPUT
Quality assurance and output involves the process of validation, adjustments, further publications of key market indicators. Extensive plausibility and consistency tests are performed on derived time series to ensure the high degree of quality of our market analysis. This quality assurance procedure also includes rigorous inspection, validation, and editing by an experienced management team to assure the dependability of the published data.