アーバンエアモビリティ(UAM)の世界市場2022-2031:機会分析・産業予測

◆英語タイトル:Urban Air Mobility Market by Platform (Air Taxis, Air Shuttles & Air Metro, Personal Air Vehicles, Cargo Air Vehicles, Air Ambulance & Medical Emergency Vehicles, and Last-mile Delivery Vehicles), Platform Operations (Piloted and Autonomous), Range (Intercity and Intracity), Platform Architecture (Rotary Wing and Fixed-wing Hybrid), and Regional Analysis (North America, Europe, Asia-Pacific, and LAMEA): Global Opportunity Analysis and Industry Forecast, 2022-2031

Research Diveが発行した調査報告書(RDV23MA008)◆商品コード:RDV23MA008
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◆発行日:2022年9月22日
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❖ レポートの概要 ❖

リサーチ・ダイブ社では、世界のアーバンエアモビリティ(UAM)市場規模が2021年2,280百万ドルから2031年には30,740百万ドルになり、年平均30.2%成長すると推測しています。本調査報告書では、アーバンエアモビリティ(UAM)の世界市場について多面的に調べ、調査手法、調査範囲、エグゼクティブサマリー、市場概要、プラットフォーム別(エアタクシー、エアシャトル&エアメトロ、個人用航空機、貨物航空機、エア救急車&医療用緊急車両、ラストマイル配送車両)分析、プラットフォームオペレーション別(パイロット型、自律型)分析、範囲別(都市間、都市内)分析、プラットフォームアーキテクチャ別(回転翼、固定翼ハイブリッド)分析、地域別(北米、ヨーロッパ、アジア太平洋、中南米・中東・アフリカ)分析、競争状況などの内容を掲載しています。尚、企業情報として、Ehang, Lilium Gmbh, Airbus, Wisk Aero LLC., Bell Textron, Volocopter GmbH, Workhorse Group Inc., Joby Aviation., Kitty Hawk, and Archer Aviation.などが記載されています。
・調査手法
・調査範囲
・エグゼクティブサマリー
・市場概要
・世界のアーバンエアモビリティ(UAM)市場規模:プラットフォーム別
- エアタクシーの市場規模
- エアシャトル&エアメトロの市場規模
- 個人用航空の市場規模
- 貨物航空機の市場規模
- その他プラットフォームの市場規模
・世界のアーバンエアモビリティ(UAM)市場規模:プラットフォームオペレーション別
- パイロット型アーバンエアモビリティ(UAM)の市場規模
- 自律型アーバンエアモビリティ(UAM)の市場規模
・世界のアーバンエアモビリティ(UAM)市場規模:範囲別
- 都市間アーバンエアモビリティ(UAM)の市場規模
- 都市内アーバンエアモビリティ(UAM)の市場規模
・世界のアーバンエアモビリティ(UAM)市場規模:プラットフォームアーキテクチャ別
- 回転翼アーバンエアモビリティ(UAM)の市場規模
- 固定翼ハイブリッドアーバンエアモビリティ(UAM)の市場規模
・世界のアーバンエアモビリティ(UAM)市場規模:地域別
- 北米のアーバンエアモビリティ(UAM)市場規模
- ヨーロッパのアーバンエアモビリティ(UAM)市場規模
- アジア太平洋のアーバンエアモビリティ(UAM)市場規模
- 中南米のアーバンエアモビリティ(UAM)市場規模
- 中東/アフリカのアーバンエアモビリティ(UAM)市場規模
・競争状況
・企業情報

According to Research Dive analysis, the global urban air mobility market is anticipated to generate a revenue of $30,740 million by 2031, increasing from $2,280 million in 2021, at a healthy CAGR of 30.2%.

COVID-19 Impact on the Global Urban Air Mobility Market:
The COVID-19 pandemic has created several challenges that has drastically affected the urban air mobility market growth due to low demand from end-use industries. Nearly every business has been impacted by the unmatched worldwide public health emergency known as COVID-19, and the long-term impacts are expected to have an influence on industry growth throughout the course of the forecast period. The global pandemic has many effects on practically every industry, including supply chain interruptions, direct effects on production and demand, and market progress on active projects. On the other hand, some of the well-known providers of urban air mobility (UAM) solutions, including Volocopter pioneer in the field, are employing a variety of tactics in response to the COVID-19 dilemma.

Urban Air Mobility Market Analysis:
The increasing demand for alternative means of transportation and skyrocketing traffic are anticipated to fuel the expansion of the urban air mobility market. Additionally, a growing urban population will support market expansion. Additionally, using autonomous urban air mobility is anticipated to result in reduced traffic congestion and pollution, as well as quicker travel times. These elements will accelerate market expansion. Also, urban air mobility sector receiving a lot of R&D funding, and many start-ups and established companies view this market as having significant growth potential. As a result, during the anticipated period, these variables are anticipated to fuel urban air mobility market growth. However, the urban air market share would be constrained throughout the period by factors such escalating security concerns, high initial investment, and a lack of government assistance in terms of regulatory framework.
Urban air mobility manufacturer is continuously improving their technology to improve the overall efficiency of air mobility vehicles. Several urban air mobility companies have begun researching and developing autonomous eVTOL aircraft systems. Electric aircraft known as eVTOLs move vertically during takeoff and landing. Although conventional VTOLs like helicopters are frequently employed, more businesses are looking into eVTOLs as an option.
eVTOL aircraft have a number of potential benefits, including the potential to be more affordable than conventional helicopters, less noise, lower maintenance costs and less exhaust pollution. A fascinating reason for eVTOL development is the goal to provide more affordable air travel in urban settings. These factors are anticipated to improve the urban air mobility market growth.

Based on platform, the air taxis sub-segment dominated the market in 2021 majorly due to the ability of urban air mobility to commute passenger from one place to another without any traffic conjunction.

Based on range, the intercity sub-segment dominated the market in 2021 due to demand for fast and environment friendly mode of transportation.

Based on platform operations, the autonomous sub-segment is predicted to be the fastest growing sub-segment by 2031 due to demand for autonomous air mobility vehicle to reduce any kind of human error.

Based on platform architecture, the rotary wing sub-segment dominated the market in 2021 due to demand for rotary wings in air mobility vehicle because of better stability and control provided by the use of rotary wings in urban air mobility vehicles.

Based on geographical scope, Asia-Pacific dominated the global market in 2021 and is projected to remain the fastest-growing sub-segment during the forecast period. This growth would be a result of various companies in the region such as Ehang, Hyundai, Honda and many other startup are investing in R&D and development of urban air mobility.
The companies involved in the global urban air mobility market are Ehang, Lilium Gmbh, Airbus, Wisk Aero LLC., Bell Textron, Volocopter GmbH, Workhorse Group Inc., Joby Aviation., Kitty Hawk, and Archer Aviation.”

❖ レポートの目次 ❖

1.Research Methodology

1.1.Desk Research
1.2.Real time insights and validation
1.3.Forecast model
1.4.Assumptions and forecast parameters
1.5.Market size estimation

1.5.1.Top-down approach
1.5.2.Bottom-up approach

2.Report Scope

2.1.Market definition
2.2.Key objectives of the study
2.3.Report overview
2.4.Market segmentation
2.5.Overview of the impact of COVID-19 on global urban air mobility market

3.Executive Summary

4.Market Overview

4.1.Introduction
4.2.Growth impact forces

4.2.1.Drivers
4.2.2.Restraints
4.2.3.Opportunities

4.3.Market value chain analysis

4.3.1.List of raw material suppliers
4.3.2.List of manufacturers
4.3.3.List of distributors

4.4.Innovation & sustainability matrices

4.4.1.Technology matrix
4.4.2.Regulatory matrix

4.5.Porter’s five forces analysis

4.5.1.Bargaining power of suppliers
4.5.2.Bargaining power of consumers
4.5.3.Threat of substitutes
4.5.4.Threat of new entrants
4.5.5.Competitive rivalry intensity

4.6.PESTLE analysis

4.6.1.Political
4.6.2.Economical
4.6.3.Social
4.6.4.Technological
4.6.5.Environmental

4.7.Impact of COVID-19 on urban air mobility market

4.7.1.Pre-covid market scenario
4.7.2.Post-covid market scenario

5.Urban Air Mobility Market Analysis, by Platform

5.1.Overview
5.2.Air Taxis

5.2.1.Definition, key trends, growth factors, and opportunities
5.2.2.Market size analysis, by region, 2021-2031
5.2.3.Market share analysis, by country, 2021-2031

5.3.Air Shuttles & Air Metro

5.3.1.Definition, key trends, growth factors, and opportunities
5.3.2.Market size analysis, by region, 2021-2031
5.3.3.Market share analysis, by country, 2021-2031

5.4.Personal Air Vehicles

5.4.1.Definition, key trends, growth factors, and opportunities
5.4.2.Market size analysis, by region, 2021-2031
5.4.3.Market share analysis, by country, 2021-2031

5.5.Cargo Air Vehicles

5.5.1.Definition, key trends, growth factors, and opportunities
5.5.2.Market size analysis, by region, 2021-2031
5.5.3.Market share analysis, by country, 2021-2031

5.6.Air Ambulance & Medical Emergency Vehicles

5.6.1.Definition, key trends, growth factors, and opportunities
5.6.2.Market size analysis, by region, 2021-2031
5.6.3.Market share analysis, by country, 2021-2031

5.7.Last-mile Delivery Vehicles

5.7.1.Definition, key trends, growth factors, and opportunities
5.7.2.Market size analysis, by region, 2021-2031
5.7.3.Market share analysis, by country, 2021-2031

5.8.Research Dive Exclusive Insights

5.8.1.Market attractiveness
5.8.2.Competition heatmap

6.Urban Air Mobility Market Analysis, by Platform Operations

6.1.Overview
6.2.Piloted

6.2.1.Definition, key trends, growth factors, and opportunities
6.2.2.Market size analysis, by region, 2021-2031
6.2.3.Market share analysis, by country, 2021-2031

6.3.Autonomous

6.3.1.Definition, key trends, growth factors, and opportunities
6.3.2.Market size analysis, by region, 2021-2031
6.3.3.Market share analysis, by country, 2021-2031

6.4.Research Dive Exclusive Insights

6.4.1.Market attractiveness
6.4.2.Competition heatmap

7.Urban Air Mobility Market Analysis, by Range

7.1.Overview

7.2.Intercity

7.2.1.Definition, key trends, growth factors, and opportunities
7.2.2.Market size analysis, by region, 2021-2031
7.2.3.Market share analysis, by country, 2021-2031

7.3.Intracity

7.3.1.Definition, key trends, growth factors, and opportunities
7.3.2.Market size analysis, by region, 2021-2031
7.3.3.Market share analysis, by country, 2021-2031

7.4.Research Dive Exclusive Insights

7.4.1.Market attractiveness
7.4.2.Competition heatmap

8.Urban Air Mobility Market Analysis, by Platform Architecture

8.1.Overview
8.2.Rotary Wing

8.2.1.Definition, key trends, growth factors, and opportunities
8.2.2.Market size analysis, by region, 2021-2031
8.2.3.Market share analysis, by country, 2021-2031

8.3.Fixed-wing Hybrid

8.3.1.Definition, key trends, growth factors, and opportunities
8.3.2.Market size analysis, by region, 2021-2031
8.3.3.Market share analysis, by country, 2021-2031

8.4.Research Dive Exclusive Insights

8.4.1.Market attractiveness
8.4.2.Competition heatmap

9.Urban Air Mobility Market Analysis, by Region

9.1.North America

9.1.1.U.S.

9.1.1.1.Market size analysis, by Platform, 2021-2031
9.1.1.2.Market size analysis, by Platform Operations, 2021-2031
9.1.1.3.Market size analysis, by Range, 2021-2031
9.1.1.4.Market size analysis, by Platform Architecture, 2021-2031

9.1.2.Canada

9.1.2.1.Market size analysis, by Platform, 2021-2031
9.1.2.2.Market size analysis, by Platform Operations, 2021-2031
9.1.2.3.Market size analysis, by Range, 2021-2031
9.1.2.4.Market size analysis, by Platform Architecture, 2021-2031

9.1.3.Mexico

9.1.3.1.Market size analysis, by Platform, 2021-2031
9.1.3.2.Market size analysis, by Platform Operations, 2021-2031
9.1.3.3.Market size analysis, by Range, 2021-2031
9.1.3.4.Market size analysis, by Platform Architecture, 2021-2031

9.1.4.Research Dive Exclusive Insights

9.1.4.1.Market attractiveness
9.1.4.2.Competition heatmap

9.2.Europe

9.2.1.Germany

9.2.1.1.Market size analysis, by Platform, 2021-2031
9.2.1.2.Market size analysis, by Platform Operations, 2021-2031
9.2.1.3.Market size analysis, by Range, 2021-2031
9.2.1.4.Market size analysis, by Platform Architecture, 2021-2031

9.2.2.UK

9.2.2.1.Market size analysis, by Platform, 2021-2031
9.2.2.2.Market size analysis, by Platform Operations, 2021-2031
9.2.2.3.Market size analysis, by Range, 2021-2031
9.2.2.4.Market size analysis, by Platform Architecture, 2021-2031

9.2.3.France

9.2.3.1.Market size analysis, by Platform, 2021-2031
9.2.3.2.Market size analysis, by Platform Operations, 2021-2031
9.2.3.3.Market size analysis, by Range, 2021-2031
9.2.3.4.Market size analysis, by Platform Architecture, 2021-2031

9.2.4.Spain

9.2.4.1.Market size analysis, by Platform, 2021-2031
9.2.4.2.Market size analysis, by Platform Operations, 2021-2031
9.2.4.3.Market size analysis, by Range, 2021-2031
9.2.4.4.Market size analysis, by Platform Architecture, 2021-2031

9.2.5.Italy

9.2.5.1.Market size analysis, by Platform, 2021-2031
9.2.5.2.Market size analysis, by Platform Operations, 2021-2031
9.2.5.3.Market size analysis, by Range, 2021-2031
9.2.5.4.Market size analysis, by Platform Architecture, 2021-2031

9.2.6.Rest of Europe

9.2.6.1.Market size analysis, by Platform, 2021-2031
9.2.6.2.Market size analysis, by Platform Operations, 2021-2031
9.2.6.3.Market size analysis, by Range, 2021-2031
9.2.6.4.Market size analysis, by Platform Architecture, 2021-2031

9.2.7.Research Dive Exclusive Insights

9.2.7.1.Market attractiveness
9.2.7.2.Competition heatmap

9.3.Asia Pacific

9.3.1.China

9.3.1.1.Market size analysis, by Platform, 2021-2031
9.3.1.2.Market size analysis, by Platform Operations, 2021-2031
9.3.1.3.Market size analysis, by Range, 2021-2031
9.3.1.4.Market size analysis, by Platform Architecture, 2021-2031

9.3.2.Japan

9.3.2.1.Market size analysis, by Platform, 2021-2031
9.3.2.2.Market size analysis, by Platform Operations, 2021-2031
9.3.2.3.Market size analysis, by Range, 2021-2031
9.3.2.4.Market size analysis, by Platform Architecture, 2021-2031

9.3.3.India

9.3.3.1.Market size analysis, by Platform, 2021-2031
9.3.3.2.Market size analysis, by Platform Operations, 2021-2031
9.3.3.3.Market size analysis, by Range, 2021-2031
9.3.3.4.Market size analysis, by Platform Architecture, 2021-2031

9.3.4.Australia

9.3.4.1.Market size analysis, by Platform, 2021-2031
9.3.4.2.Market size analysis, by Platform Operations, 2021-2031
9.3.4.3.Market size analysis, by Range, 2021-2031
9.3.4.4.Market size analysis, by Platform Architecture, 2021-2031

9.3.5.South Korea

9.3.5.1.Market size analysis, by Platform, 2021-2031
9.3.5.2.Market size analysis, by Platform Operations, 2021-2031
9.3.5.3.Market size analysis, by Range, 2021-2031
9.3.5.4.Market size analysis, by Platform Architecture, 2021-2031

9.3.6.Rest of Asia Pacific

9.3.6.1.Market size analysis, by Platform, 2021-2031
9.3.6.2.Market size analysis, by Platform Operations, 2021-2031
9.3.6.3.Market size analysis, by Range, 2021-2031
9.3.6.4.Market size analysis, by Platform Architecture, 2021-2031

9.3.7.Research Dive Exclusive Insights

9.3.7.1.Market attractiveness
9.3.7.2.Competition heatmap

9.4.LAMEA

9.4.1.Brazil

9.4.1.1.Market size analysis, by Platform, 2021-2031
9.4.1.2.Market size analysis, by Platform Operations, 2021-2031
9.4.1.3.Market size analysis, by Range, 2021-2031
9.4.1.4.Market size analysis, by Platform Architecture, 2021-2031

9.4.2.Saudi Arabia

9.4.2.1.Market size analysis, by Platform, 2021-2031
9.4.2.2.Market size analysis, by Platform Operations, 2021-2031
9.4.2.3.Market size analysis, by Range, 2021-2031
9.4.2.4.Market size analysis, by Platform Architecture, 2021-2031

9.4.3.UAE

9.4.3.1.Market size analysis, by Platform, 2021-2031
9.4.3.2.Market size analysis, by Platform Operations, 2021-2031
9.4.3.3.Market size analysis, by Range, 2021-2031
9.4.3.4.Market size analysis, by Platform Architecture, 2021-2031

9.4.4.South Africa

9.4.4.1.Market size analysis, by Platform, 2021-2031
9.4.4.2.Market size analysis, by Platform Operations, 2021-2031
9.4.4.3.Market size analysis, by Range, 2021-2031
9.4.4.4.Market size analysis, by Platform Architecture, 2021-2031

9.4.5.Rest of LAMEA

9.4.5.1.Market size analysis, by Platform, 2021-2031
9.4.5.2.Market size analysis, by Platform Operations, 2021-2031
9.4.5.3.Market size analysis, by Range, 2021-2031
9.4.5.4.Market size analysis, by Platform Architecture, 2021-2031

9.4.6.Research Dive Exclusive Insights

9.4.6.1.Market attractiveness
9.4.6.2.Competition heatmap

10.Competitive Landscape

10.1.Top winning strategies, 2021

10.1.1.By strategy
10.1.2.By year

10.2.Strategic overview

10.3.Market share analysis, 2021

11.Company Profiles

11.1.EHang

11.1.1.Overview
11.1.2.Business segments
11.1.3.Product portfolio
11.1.4.Financial performance
11.1.5.Recent developments
11.1.6.SWOT analysis

11.2.Lilium Gmbh

11.2.1.Overview
11.2.2.Business segments
11.2.3.Product portfolio
11.2.4.Financial performance
11.2.5.Recent developments
11.2.6.SWOT analysis

11.3.Airbus

11.3.1.Overview
11.3.2.Business segments
11.3.3.Product portfolio
11.3.4.Financial performance
11.3.5.Recent developments
11.3.6.SWOT analysis

11.4.Wisk Aero LLC.

11.4.1.Overview
11.4.2.Business segments
11.4.3.Product portfolio
11.4.4.Financial performance
11.4.5.Recent developments
11.4.6.SWOT analysis

11.5.Bell Textron

11.5.1.Overview
11.5.2.Business segments
11.5.3.Product portfolio
11.5.4.Financial performance
11.5.5.Recent developments
11.5.6.SWOT analysis

11.6.Volocopter GmbH

11.6.1.Overview
11.6.2.Business segments
11.6.3.Product portfolio
11.6.4.Financial performance
11.6.5.Recent developments
11.6.6.SWOT analysis

11.7.Workhorse Group Inc.

11.7.1.Overview
11.7.2.Business segments
11.7.3.Product portfolio
11.7.4.Financial performance
11.7.5.Recent developments
11.7.6.SWOT analysis

11.8.Joby Aviation.

11.8.1.Overview
11.8.2.Business segments
11.8.3.Product portfolio
11.8.4.Financial performance
11.8.5.Recent developments
11.8.6.SWOT analysis

11.9.Kitty Hawk

11.9.1.Overview
11.9.2.Business segments
11.9.3.Product portfolio
11.9.4.Financial performance
11.9.5.Recent developments
11.9.6.SWOT analysis

11.10.Archer Aviation

11.10.1.Overview
11.10.2.Business segments
11.10.3.Product portfolio
11.10.4.Financial performance
11.10.5.Recent developments
11.10.6.SWOT analysis

12.Appendix

12.1.Parent & peer market analysis
12.2.Premium insights from industry experts
12.3.Related reports”



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★リサーチレポート[ アーバンエアモビリティ(UAM)の世界市場2022-2031:機会分析・産業予測(Urban Air Mobility Market by Platform (Air Taxis, Air Shuttles & Air Metro, Personal Air Vehicles, Cargo Air Vehicles, Air Ambulance & Medical Emergency Vehicles, and Last-mile Delivery Vehicles), Platform Operations (Piloted and Autonomous), Range (Intercity and Intracity), Platform Architecture (Rotary Wing and Fixed-wing Hybrid), and Regional Analysis (North America, Europe, Asia-Pacific, and LAMEA): Global Opportunity Analysis and Industry Forecast, 2022-2031)]についてメールでお問い合わせはこちらでお願いします。


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