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Urban Air Mobility Market by Component (Infrastructure Solutions, Platform), Platform Operation (Piloted, Autonomous), Range (Intercity, Intracity), Platform Architecture, Systems, End User and Region - Global Forecast To 2030

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    Report

  • 317 Pages
  • May 2022
  • Region: Global
  • Markets and Markets
  • ID: 4756726

Need for Alternative Modes of Transport in Urban Areas Drives Market Growth

The urban air mobility market is projected to grow from USD 2.6 billion in 2022 to USD 28.3 billion by 2030, at a CAGR of 34.3% from 2022 to 2030. The market is driven by rising need for increased efficiency, human safety, and investment activities. However, the market's growth is limited by the inadequate reliability of UAM aircraft's during transportation and the inability to foresee the market growth.





The COVID-19 outbreak has had an impact on the UAM supply chain. The spread of COVID-19 in the United States and Europe is expected to be slowed by lockdowns at UAM vehicle research and development centres. As a result of the Asia Pacific lockdown, many businesses in the UAM industry have lost revenue. Many startups have failed to continue operating in the area due to delays in development and a lack of funds. The commercialization of UAM appears to have been delayed by a year when compared with pre conditions.


Based on range, the intercity segment is projected to lead during the forecast period


Based on range, the market has been segmented into intercity and intracity transportation. The intercity segment is projected to lead the market during the forecast period, owing to large number of platforms being used for intercity travel, and the cost of platform being significantly high compared to intracity platforms.


The infrastructure solutions segment is projected to at the highest CAGR from 2025 to 2030


The infrastructure solutions and platform segments are segmented based component in the urban air mobility market. From 2025 to 2030, the infrastructure segment of the urban air mobility market is expected to grow at the fastest rate of 58.7%. This increase is due to the increased use of UAM aircraft for intracity transport, which has increased the demand for infrastructure.


The highest CAGR from 2025 to 2030 is the fixed wing segment


Because of fixed wing UAMs higher stability compared to rotary wing UAM, the fixed wing category is expected to develop at the fastest CAGR of 106.5% from 2025 to 2030. To carry passengers, the platform must be more stable in order to assure passenger safety, particularly for remotely piloted or completely autonomous aircraft is driving this segment.

North America is projected to have the highest share during the forecast period


The North American urban air mobility market is projected to grow at the highest rate during the forecast period. Countries in this region, such as US and Canada are investing heavily in the development and procurement of advanced UAM systems for commercial operations. The growth in this region can be attributed to the relaxation of guidelines related to UAM by the concerned authorities in North American countries and increasing investments in the development of urban air mobility infrastructure by various key players to reduce the strain on the existing transportation system in the region.


Break-up of profiles of primary participants in this report: 

  • By Company Type: Tier 1 - 49%, Tier 2 - 37% and Tier 3 - 14% 
  • By Designation: C level - 55%, Director level - 27%, Others - 18% 
  • By Region: North America - 32%, Europe - 32%, Asia Pacific - 16%, Latin America - 10% Middle East and Africa- 10%

 

Research Coverage


The scope of the report covers detailed information regarding the major factors, such as drivers, restraints, challenges, and opportunities, influencing the growth of the ground support equipment market. A detailed analysis of the key industry players has been done to provide insights into their business overviews; solutions and services; key strategies; contracts, joint ventures, partnerships & agreements, acquisitions, and new product launches associated with the ground support equipment market. Competitive analysis of upcoming startups in the ground support equipment market ecosystem is covered in this report.


Reasons to Buy This Report:


From an insight perspective, this research report has focused on various levels of analyses - industry analysis (industry trends), market ranking analysis of top players, value chain analysis, and company profiles, which together comprise and discuss basic views on the competitive landscape, emerging and high-growth segments of the urban air mobility market, high-growth regions, and market drivers, restraints, and opportunities.


The report provides insights on the following pointers:

  • Market Penetration: Comprehensive information on UAMs offered by top market players 
  • Market Sizing: The estimated size of the market in 2022 and its projection to 2030
  • Product Development/Innovation: Detailed insights on upcoming technologies, research & development activities, and new product launches in the urban air mobility market
  • Market Overview: Market dynamics and subsequent analysis of associated trends as well as drivers, opportunities, and challenges prevailing in the urban air mobility market
  • Market Development: Comprehensive information about lucrative markets - the report analyzes the markets for urban air mobility across regions
  • Market Diversification: Exhaustive information about new products, untapped geographies, recent developments, and investments in the urban air mobility market
  • Regional Analysis: Factors influencing the growth of the urban air mobility market in North America, Europe, Asia Pacific, Latin America, Middle East and Africa.
  • Competitive Assessment: In-depth assessment of market shares, strategies, products, and manufacturing capabilities of leading players in the urban air mobility market.
Frequently Asked Questions about the Global Urban Air Mobility Market

What is the estimated value of the Global Urban Air Mobility Market?

The Global Urban Air Mobility Market was estimated to be valued at $2.6 Billion in 2022.

What is the growth rate of the Global Urban Air Mobility Market?

The growth rate of the Global Urban Air Mobility Market is 34.3%, with an estimated value of $28.3 Billion by 2030.

What is the forecasted size of the Global Urban Air Mobility Market?

The Global Urban Air Mobility Market is estimated to be worth $28.3 Billion by 2030.

Who are the key companies in the Global Urban Air Mobility Market?

Key companies in the Global Urban Air Mobility Market include Airbus, Airspace Experience Technologies, Inc., Amsl Aero, Archer Aviation Inc., Aurora Flight Sciences, Autoflight, Bartini Aero, Bell Textron Inc. and Bye Aerospace.

Table of Contents

1 Introduction
1.1 Objectives of the Study
1.2 Market Definition
1.3 Market Scope
1.3.1 Regional Scope
1.3.2 Years Considered for the Study
1.4 Currency
1.5 Limitations
1.6 Market Stakeholders
2 Research Methodology
2.1 Research Data
2.1.1 Secondary Data
2.1.1.1 Key Data From Secondary Sources
2.1.2 Primary Data
2.1.2.1 Key Data From Primary Sources
2.1.3 Market Definition & Scope
2.1.4 Exclusions
2.2 Research Approach & Methodology
2.2.1 Bottom-Up Approach
2.2.1.1 Research Methodology -1
2.2.1.1.1 UAM Market Size Calculation
2.2.1.1.2 Regional Evtol Aircraft Market
2.2.1.2 Research Methodology -2
2.2.1.3 Research Methodology -3
2.2.1.3.1 UAM Infrastructure Market Size Calculation
2.2.1.4 Breakdown of Primaries
2.3 Market Size Estimation
2.3.1 Bottom-Up Approach
2.3.2 Top-Down Approach
2.4 Triangulation & Validation
2.4.1 Triangulation Through Secondary
2.4.2 Triangulation Through Primaries
2.5 Assumptions
2.5.1 Market Sizing
2.5.2 Market Forecasting
2.6 Risks Analysis
3 Executive Summary
4 Premium Insights
4.1 Attractive Growth Opportunities in the Urban Air Mobility Market
4.2 Urban Air Mobility Market, By Platform
4.3 Urban Air Mobility Market, By Infrastructure
4.4 Urban Air Mobility Market, By Operation
4.5 Urban Air Mobility Market, By Range
4.6 Urban Air Mobility Market, By Region
5 Market Overview
5.1 Introduction
5.2 Market Dynamics
5.2.1 Drivers
5.2.1.1 Need for an Alternative Mode of Transportation in Urban Mobility
5.2.1.2 Demand for an Efficient Mode of Logistics & Transportation
5.2.1.3 Adoption of Urban Air Mobility Due to Environmental Concerns
5.2.1.4 Smart City Initiatives Will Demand Urban Air Mobility
5.2.1.5 Significant Investments By Stakeholders in Urban Air Mobility
5.2.2 Restraints
5.2.2.1 Limited Adoption of Urban Air Mobility Due to Pestle Factors
5.2.3 Opportunities
5.2.3.1 Intracity Transportation Using Urban Air Mobility to Be A Short-Term Opportunity
5.2.3.2 Increasing Demand for Autonomous Air Ambulance Vehicles
5.2.4 Challenges
5.2.4.1 Stringent Regulations on Urban Air Mobility Operations By Aviation Authorities
5.2.4.1.1 Restrictions on the Commercial Use of Uav
5.2.4.2 Integration of Urban Air Mobility With Current Urban Infrastructure
6 Industry Trends
6.1 Introduction
6.2 Technology Trends
6.2.1 Blockchain
6.2.2 Artificial Intelligence
6.2.3 Sense & Avoid System
6.2.4 Cloud Computing
6.2.5 Wireless Charging
6.2.6 Automated Ground Control Stations
6.2.7 Internet of Things (IoT)
6.3 Country-Wise Drone Regulations
6.4 Patent Analysis
7 Urban Air Mobility Market, By Component
7.1 Introduction
7.2 Infrastructure
7.2.1 Charging Stations
7.2.1.1 Next Generation of Charging Stations Will Help Evtol Aircraft to Reduce the Turnaround Time
7.2.2 Vertiports
7.2.2.1 Increasing Investments in Passenger Drones Will the Demand for New Vertiports in the Coming Years
7.2.3 Traffic Management
7.2.3.1 The Requirement for Utm Solutions to Manage Drone Operations is One of the Key Factors Expected to Influence the Growth of the Urban Air Mobility Market
7.3 Platform
7.3.1 Air Taxi
7.3.1.1 Air Taxis Using Evtol Aircraft are Expected to Commercialize in the Coming Years
7.3.2 Passenger Aerial Vehicle
7.3.2.1 Increasing Disposal Income in Urban Areas Coupled With the Development of Smart Cities has Resulted in the Development of Passenger Aerial Vehicles for Intracity and Intercity Transportation
7.3.3 Cargo Aerial Vehicle
7.3.3.1 Technologies Such as AI (Artificial Intelligence), Wireless Charging, and Automated Ground Control Station are Required for the Implementation of Drone Logistics Solutions
7.3.4 Air Ambulance
7.3.4.1 Healthcare Industry is Expected to Witness A Disruptive Change With the Introduction of Air Ambulance Drones
8 Urban Air Mobility Market, By Operation
8.1 Introduction
8.2 Piloted
8.2.1 The Need for Human Intervention is Due to Factors Such as Social Acceptance and International Laws for Safeguarding the Lives of Passengers
8.3 Autonomous
8.3.1 Increasing Investments By Various Manufacturers and Government Bodies in the Development of Autonomous Unmanned Systems is Expected to Grow at A High Rate During the Forecast Period
9 Urban Air Mobility Market, By Range
9.1 Introduction
9.2 Intercity (100 Kilometers to 400 Kilometers)
9.3 Intracity (20 Kilometers to 100 Kilometers)
10 Urban Air Mobility Market, By Region
10.1 Introduction
10.2 North America
10.2.1 US
10.2.1.1 Major E-Vtol Aircraft Manufacturers are Present in the Us, Resulting in the Increasing Adoption of Unmanned Systems for Various Civil & Commercial Applications in the Country
10.2.1.2 Pestle Analysis
10.3 Europe
10.3.1 Germany
10.3.1.1 European Region Including Cities of Enschede and Munster Signed the Manifesto of Intent to Join the Urban Air Mobility (UAM) Initiative
10.3.1.2 Pestle Analysis
10.3.2 France
10.3.2.1 Toulouse Métropole, A City of France has Long Term Plans for Sustainable Integration of Air Mobility in Phases
10.3.2.2 Pestle Analysis
10.3.3 Switzerland
10.3.3.1 The Canton of Geneva is Part of the European Union’s UAM Initiative
10.3.3.2 Pestle Analysis
10.3.4 Belgium
10.3.4.1 Belgium is Exploring Possibilities for the Setting Up of A Drone-Based Emergency Services Network That Will Be Used for Transportation of Medicines and Patients
10.3.5 Bulgaria
10.3.5.1 The City of Plovdiv Will Be the First to Benefit From UAM Initiative
10.3.6 Estonia
10.3.6.1 Estonia is A Part of Europe’s Ambitious Single European Sky (SES) Initiative Space Trial Programme to Test the Implementation of Urban Air Mobility Using A Fleet of Drones
10.3.7 Finland
10.3.7.1 Finland Received Major Investments From Wing, A Subsidiary of Alphabet Inc. Which is the Parent Company of Google, in January 2019 for Starting Drone Delivery Services in the Country
10.3.8 Poland
10.3.8.1 Polish Air Navigation Services Agency (PANSA) and Logistics Services Center (LSC), Manager of the Warsaw Babice Airport, are Collaborating for Development of UAM in Poland
10.3.9 The Netherlands
10.3.9.1 Amsterdam Became A Part of the European Union’s European Innovation Partnership on Smart Cities and Communities (EIP-SCC) Urban Air Mobility (UAM) Initiative
10.4 Asia Pacific
10.4.1 Japan
10.4.1.1 Air Mobility Using Unmanned Systems Could Become A Powerful Tool for Enhancing Public Safety in the Country
10.4.1.2 Pestle Analysis
10.4.2 Australia
10.4.2.1 Australia is One of the Countries Identified By Uberair for Its Operational Air Taxi Service Using Unmanned Aerial Vehicle By 2020
10.4.2.2 Pestle Analysis
10.4.3 India
10.4.3.1 India is Estimated to Be One of the Most Challenging Markets for Commercialization of Evtols for Applications Such as Cargo Delivery and Passenger Travel
10.4.3.2 Pestle Analysis
10.4.4 New Zealand
10.4.4.1 Airways New Zealand is A Key Provider of Air Traffic Service in New Zealand and is Working in Collaboration With Kitty Hawk, an Air Taxi Provider, to Integrate Air Taxis Traffic Management System
10.5 Middle East
10.5.1 UAE
10.5.1.1 Dubai Was Selected as One of the Partner City By Uberair to Develop On-Demand Taxi Services of Electric Drones in Hopes to Cut Down on Traffic and Slash Commuting Duration
10.5.1.2 Pestle Analysis
10.6 Latin America
10.6.1 Brazil
10.6.1.1 The Establishment of Airbus’s New Urban Air Mobility Unit in Sao Paulo, Brazil, Airbus is Aiming to Make Intercity and Intracity Air Travel for Passengers Possible By Their Aerial Vehicle in the Countries Such as Brazil
11 Competitive Landscape
11.1 Introduction
11.2 Company Ranking Analysis
11.3 Competitive Situations and Trends
11.3.1 Expansions
11.3.2 New Product Launches & Developments
11.3.3 Partnerships & Agreements
11.4 Competitive Leadership Mapping
11.4.1 Visionary Leaders
11.4.2 Innovators
11.4.3 Dynamic Differentiators
11.4.4 Emerging Companies
12 Company Profiles
12.1 Introduction
12.2 A³ By Airbus
12.3 Aurora Flight Sciences
12.4 Lilium
12.5 Embraer
12.6 Ehang
12.7 Volocopter
12.8 Workhorse Group
12.9 Pipistrel
12.10 Bell Helicopter
12.11 Neva Aerospace
12.12 Opener
12.13 Kitty Hawk
12.14 Joby Aviation
12.15 Karem Aircraft
12.16 Digisky
12.17 Volta Volare
12.18 Airspacex (Detroit Aircraft Corporation)
12.19 Siemens
12.20 Delorean Aerospace
13 Appendix
13.1 Discussion Guide
13.2 Knowledge Store: Subscription Portal
13.3 Available Customization
13.4 Related Reports
13.5 Author Details
List of Tables
Table 1 Venture Capital Funding in Startups
Table 2 Restrictions on the Use of Drone in Countries
Table 3 Rules and Guidelines By the Federal Aviation Administration for Operation of Uavs in the Us
Table 4 Rules and Guidelines By Civil Aviation Authority for Operation of Uavs in the Uk
Table 5 Rules and Guidelines for Operation of Uavs in Other Countries
Table 6 Uav Regulations, By Country
Table 7 Patents Related to Drones Granted Between 2015 and 2017
Table 8 Urban Air Mobility Market Size, By Component, 2016-2030 (USD Million)
Table 9 Urban Air Mobility Infrastructure Market Size, By Solution, 2016-2030 (USD Million)
Table 10 Urban Air Mobility Platform Market Size, By Application, 2016-2030 (USD Million)
Table 11 Major Developments in the Field of Air Taxies
Table 12 Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 13 Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 14 Urban Air Mobility Market Size, By Region, 2016-2030 (USD Million)
Table 15 North America Urban Air Mobility Market Size, By Country, 2016-2030 (USD Million)
Table 16 US Urban Air Mobility Market Size, By Component, 2016-2030 (USD Million)
Table 17 US Urban Air Mobility Infrastructure Market Size, By Solution, 2016-2030 (USD Million)
Table 18 US Urban Air Mobility Platform Market Size, By Application, 2016-2030 (USD Million)
Table 19 US Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 20 US Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 21 Europe Urban Air Mobility Market Size, By Country, 2016-2030 (USD Million)
Table 22 Europe Urban Air Mobility Market Size, By Component, 2016-2030 (USD Million)
Table 23 Europe Urban Air Mobility Infrastructure Market Size, By Solution, 2016-2030 (USD Million)
Table 24 Europe Urban Air Mobility Platform Market Size, By Application, 2016-2030 (USD Million)
Table 25 Europe Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 26 Europe Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 27 Germany Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 28 Germany Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 29 France Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 30 France Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 31 Switzerland Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 32 Switzerland Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 33 Belgium Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 34 Belgium Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 35 Bulgaria Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 36 Bulgaria Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 37 Estonia Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 38 Estonia Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 39 Finland Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 40 Finland Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 41 Poland Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 42 Poland Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 43 Netherlands Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 44 Netherlands Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 45 Asia Pacific Urban Air Mobility Market Size, By Country, 2016-2030 (USD Million)
Table 46 Asia Pacific Urban Air Mobility Market Size, By Component, 2016-2030 (USD Million)
Table 47 Asia Pacific Urban Air Mobility Infrastructure Market Size, By Solution, 2016-2030 (USD Million)
Table 48 Asia Pacific Urban Air Mobility Platform Market Size, By Application, 2016-2030 (USD Million)
Table 49 Asia Pacific Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 50 Asia Pacific Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 51 Japan Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 52 Japan Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 53 Australia Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 54 Australia Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 55 India Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 56 India Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 57 New Zealand Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 58 New Zealand Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 59 Middle East Urban Air Mobility Market Size, By Country, 2016-2030 (USD Million)
Table 60 UAE Urban Air Mobility Market Size, By Component, 2016-2030 (USD Million)
Table 61 UAE Urban Air Mobility Infrastructure Market Size, By Solution, 2016-2030 (USD Million)
Table 62 UAE Urban Air Mobility Platform Market Size, By Application, 2016-2030 (USD Million)
Table 63 UAE Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 64 UAE Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 65 Latin America Urban Air Mobility Market Size, By Country, 2016-2030 (USD Million)
Table 66 Brazil Urban Air Mobility Market Size, By Component, 2016-2030 (USD Million)
Table 67 Brazil Urban Air Mobility Infrastructure Market Size, By Solution, 2016-2030 (USD Million)
Table 68 Brazil Urban Air Mobility Platform Market Size, By Application, 2016-2030 (USD Million)
Table 69 Brazil Urban Air Mobility Market Size, By Operation, 2016-2030 (USD Million)
Table 70 Brazil Urban Air Mobility Market Size, By Range, 2016-2030 (USD Million)
Table 71 Expansions, 2014 to February 2019
Table 72 New Product Launches & Developments, 2014 to February 2019
Table 73 Partnerships & Agreements, 2014 to February 2019
List of Figures
Figure 1 Urban Air Mobility Market Segmentation
Figure 2 Research Flow
Figure 3 Research Design
Figure 4 Market Size Estimation Methodology: Bottom-Up Approach
Figure 5 Market Size Estimation Methodology: Top-Down Approach
Figure 6 Data Triangulation
Figure 7 Assumptions for the Research Study
Figure 8 Platform Segment Estimated to Lead Urban Air Mobility Market in 2018
Figure 9 Piloted Segment Estimated to Lead Ur0ban Air Mobility Market in 2018
Figure 10 Intercity (100 to 400 Kilometers) Segment Estimated to Lead Urban Air Mobility Market in 2018
Figure 11 New Zealand is Projected to Grow at Highest Rate From 2025 to 2030
Figure 12 North America Estimated to Lead the Urban Air Mobility Market in 2018
Figure 13 Recent Technological Developments, Use of Uavs in Various Civil & Commercial Applications, and Significant Investments in Emerging Countries are Driving the Growth of the Urban Air Mobility Market
Figure 14 Air Taxi Segment Expected to Lead the Market in 2018
Figure 15 Traffic Management Segment Expected to Lead the Market From 2018 to 2030
Figure 16 Piloted Segment Expected to Lead the Market From 2018 to 2030
Figure 17 Intercity (100 to 400 Kilometers) Segment Expected to Lead the Market From 2018 to 2030
Figure 18 North America Expected to Lead the Urban Air Mobility Market From 2018 to 2030
Figure 19 Urban Air Mobility Market Dynamics
Figure 20 Critical Components of UAM Ecosystem
Figure 21 Key Technology Enablers for Urban Air Mobility
Figure 22 Companies Working Toward the Development of Drones and Evtol Aircraft Incorporating Artificial Intelligence
Figure 23 Platform Segment Projected to Lead Urban Air Mobility Market From in 2018
Figure 24 Autonomous Segment Projected to Grow at Higher Rate From 2025 to 2030
Figure 25 Intracity Segment Projected to Lead Urban Air Mobility Market From 2018 to 2030
Figure 26 North America Urban Air Mobility Market Projected to Grow at Highest Rate From 2025 to 2030
Figure 27 North America Urban Air Mobility Market Snapshot
Figure 28 Europe Urban Air Mobility Market Snapshot
Figure 29 Asia Pacific Urban Air Mobility Market Snapshot
Figure 30 Middle East Urban Air Mobility Market Snapshot
Figure 31 Latin America Urban Air Mobility Market Snapshot
Figure 32 Companies Adopted New Product Launches & Developments as Key Growth Strategy From 2014 to February 2019
Figure 33 Rank Analysis of Top Players in the Urban Air Mobility Market in 2018
Figure 34 Competitive Leadership Mapping of the Urban Air Mobility Market in 2018
Figure 35 Embraer: Company Snapshot
Figure 36 Workhorse Group: Company Snapshot

Executive Summary

Companies Mentioned

  • Airbus
  • Airspace Experience Technologies, Inc.
  • Amsl Aero
  • Archer Aviation Inc.
  • Aurora Flight Sciences
  • Autoflight
  • Bartini Aero
  • Bell Textron Inc.
  • Bellwether Industries Limited
  • Bye Aerospace
  • Ehang
  • Electra Aero Inc.
  • Eve Air Mobility
  • Hyundai Motor Group Tech
  • Jaunt Air Mobility LLC
  • Joby Aviation
  • Kittyhawk
  • Leonardo S.P.A
  • Lilium Gmbh
  • Lockheed Martin Corporation
  • Moller International
  • Neva Aerospace
  • Opener
  • Pipistrel
  • Skyports
  • Transcend Air Corporation
  • Vertical Aerospace Group Ltd.
  • Volocopter Gmbh
  • Wingcopter
  • Wisk Aero LLC
  • Workhorse Group Inc

Methodology

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