CHAPTER 1:INTRODUCTION
1.1.Report description
1.2.Key market segments
1.3.Key benefits to the stakeholders
1.4.Research Methodology
1.4.1.Secondary research
1.4.2.Primary research
1.4.3.Analyst tools and models
CHAPTER 2:EXECUTIVE SUMMARY
2.1.Key findings of the study
2.2.CXO Perspective
CHAPTER 3:MARKET OVERVIEW
3.1.Market definition and scope
3.2.Key findings
3.2.1.Top investment pockets
3.3.Porter’s five forces analysis
3.4.Top player positioning
3.5.Market dynamics
3.5.1.Drivers
3.5.2.Restraints
3.5.3.Opportunities
3.6.COVID-19 Impact Analysis on the market
3.7.Value Chain Analysis
3.8.Key Regulation Analysis
3.9.Patent Landscape
3.10.Market Share Analysis
3.11.Regulatory Guidelines
CHAPTER 4: URBAN AIR MOBILITY(UAM) MARKET, BY PLATFORM
4.1 Overview
4.1.1 Market size and forecast
4.2 Air Taxis
4.2.1 Key market trends, growth factors and opportunities
4.2.2 Market size and forecast, by region
4.2.3 Market analysis by country
4.3 Air Shuttles and & Air Metro
4.3.1 Key market trends, growth factors and opportunities
4.3.2 Market size and forecast, by region
4.3.3 Market analysis by country
4.4 Personal Air Vehicles
4.4.1 Key market trends, growth factors and opportunities
4.4.2 Market size and forecast, by region
4.4.3 Market analysis by country
4.5 Cargo Air Vehicles
4.5.1 Key market trends, growth factors and opportunities
4.5.2 Market size and forecast, by region
4.5.3 Market analysis by country
4.6 Air Ambulance & Medical Emergency Vehicles
4.6.1 Key market trends, growth factors and opportunities
4.6.2 Market size and forecast, by region
4.6.3 Market analysis by country
4.7 Last-mile Delivery Vehicles
4.7.1 Key market trends, growth factors and opportunities
4.7.2 Market size and forecast, by region
4.7.3 Market analysis by country
CHAPTER 5: URBAN AIR MOBILITY(UAM) MARKET, BY PLATFORM OPEATIONS
5.1 Overview
5.1.1 Market size and forecast
5.2 Piloted
5.2.1 Key market trends, growth factors and opportunities
5.2.2 Market size and forecast, by region
5.2.3 Market analysis by country
5.3 Autonomous
5.3.1 Key market trends, growth factors and opportunities
5.3.2 Market size and forecast, by region
5.3.3 Market analysis by country
CHAPTER 6: URBAN AIR MOBILITY(UAM) MARKET, BY RANGE
6.1 Overview
6.1.1 Market size and forecast
6.2 Intercity
6.2.1 Key market trends, growth factors and opportunities
6.2.2 Market size and forecast, by region
6.2.3 Market analysis by country
6.3 Intracity
6.3.1 Key market trends, growth factors and opportunities
6.3.2 Market size and forecast, by region
6.3.3 Market analysis by country
CHAPTER 7: URBAN AIR MOBILITY(UAM) MARKET, BY PLATFORM ARCHITECTURE
7.1 Overview
7.1.1 Market size and forecast
7.2 Rotory Wing
7.2.1 Key market trends, growth factors and opportunities
7.2.2 Market size and forecast, by region
7.2.3 Market analysis by country
7.3 Fixed Wing Hybrid
7.3.1 Key market trends, growth factors and opportunities
7.3.2 Market size and forecast, by region
7.3.3 Market analysis by country
CHAPTER 8: URBAN AIR MOBILITY(UAM) MARKET, BY REGION
8.1 Overview
8.1.1 Market size and forecast
8.2 North America
8.2.1 Key trends and opportunities
8.2.2 North America Market size and forecast, by Platform
8.2.3 North America Market size and forecast, by Platform Opeations
8.2.4 North America Market size and forecast, by Range
8.2.5 North America Market size and forecast, by Platform Architecture
8.2.6 North America Market size and forecast, by country
8.2.6.1 U.S.
8.2.6.1.1 Market size and forecast, by Platform
8.2.6.1.2 Market size and forecast, by Platform Opeations
8.2.6.1.3 Market size and forecast, by Range
8.2.6.1.4 Market size and forecast, by Platform Architecture
8.2.6.2 Canada
8.2.6.2.1 Market size and forecast, by Platform
8.2.6.2.2 Market size and forecast, by Platform Opeations
8.2.6.2.3 Market size and forecast, by Range
8.2.6.2.4 Market size and forecast, by Platform Architecture
8.2.6.3 Mexico
8.2.6.3.1 Market size and forecast, by Platform
8.2.6.3.2 Market size and forecast, by Platform Opeations
8.2.6.3.3 Market size and forecast, by Range
8.2.6.3.4 Market size and forecast, by Platform Architecture
8.3 Europe
8.3.1 Key trends and opportunities
8.3.2 Europe Market size and forecast, by Platform
8.3.3 Europe Market size and forecast, by Platform Opeations
8.3.4 Europe Market size and forecast, by Range
8.3.5 Europe Market size and forecast, by Platform Architecture
8.3.6 Europe Market size and forecast, by country
8.3.6.1 Germany
8.3.6.1.1 Market size and forecast, by Platform
8.3.6.1.2 Market size and forecast, by Platform Opeations
8.3.6.1.3 Market size and forecast, by Range
8.3.6.1.4 Market size and forecast, by Platform Architecture
8.3.6.2 United Kingdom
8.3.6.2.1 Market size and forecast, by Platform
8.3.6.2.2 Market size and forecast, by Platform Opeations
8.3.6.2.3 Market size and forecast, by Range
8.3.6.2.4 Market size and forecast, by Platform Architecture
8.3.6.3 France
8.3.6.3.1 Market size and forecast, by Platform
8.3.6.3.2 Market size and forecast, by Platform Opeations
8.3.6.3.3 Market size and forecast, by Range
8.3.6.3.4 Market size and forecast, by Platform Architecture
8.3.6.4 Spain
8.3.6.4.1 Market size and forecast, by Platform
8.3.6.4.2 Market size and forecast, by Platform Opeations
8.3.6.4.3 Market size and forecast, by Range
8.3.6.4.4 Market size and forecast, by Platform Architecture
8.3.6.5 Italy
8.3.6.5.1 Market size and forecast, by Platform
8.3.6.5.2 Market size and forecast, by Platform Opeations
8.3.6.5.3 Market size and forecast, by Range
8.3.6.5.4 Market size and forecast, by Platform Architecture
8.3.6.6 Rest of Europe
8.3.6.6.1 Market size and forecast, by Platform
8.3.6.6.2 Market size and forecast, by Platform Opeations
8.3.6.6.3 Market size and forecast, by Range
8.3.6.6.4 Market size and forecast, by Platform Architecture
8.4 Asia-Pacific
8.4.1 Key trends and opportunities
8.4.2 Asia-Pacific Market size and forecast, by Platform
8.4.3 Asia-Pacific Market size and forecast, by Platform Opeations
8.4.4 Asia-Pacific Market size and forecast, by Range
8.4.5 Asia-Pacific Market size and forecast, by Platform Architecture
8.4.6 Asia-Pacific Market size and forecast, by country
8.4.6.1 China
8.4.6.1.1 Market size and forecast, by Platform
8.4.6.1.2 Market size and forecast, by Platform Opeations
8.4.6.1.3 Market size and forecast, by Range
8.4.6.1.4 Market size and forecast, by Platform Architecture
8.4.6.2 Japan
8.4.6.2.1 Market size and forecast, by Platform
8.4.6.2.2 Market size and forecast, by Platform Opeations
8.4.6.2.3 Market size and forecast, by Range
8.4.6.2.4 Market size and forecast, by Platform Architecture
8.4.6.3 India
8.4.6.3.1 Market size and forecast, by Platform
8.4.6.3.2 Market size and forecast, by Platform Opeations
8.4.6.3.3 Market size and forecast, by Range
8.4.6.3.4 Market size and forecast, by Platform Architecture
8.4.6.4 South Korea
8.4.6.4.1 Market size and forecast, by Platform
8.4.6.4.2 Market size and forecast, by Platform Opeations
8.4.6.4.3 Market size and forecast, by Range
8.4.6.4.4 Market size and forecast, by Platform Architecture
8.4.6.5 Australia
8.4.6.5.1 Market size and forecast, by Platform
8.4.6.5.2 Market size and forecast, by Platform Opeations
8.4.6.5.3 Market size and forecast, by Range
8.4.6.5.4 Market size and forecast, by Platform Architecture
8.4.6.6 Rest Of Asia Pacific
8.4.6.6.1 Market size and forecast, by Platform
8.4.6.6.2 Market size and forecast, by Platform Opeations
8.4.6.6.3 Market size and forecast, by Range
8.4.6.6.4 Market size and forecast, by Platform Architecture
8.5 LAMEA
8.5.1 Key trends and opportunities
8.5.2 LAMEA Market size and forecast, by Platform
8.5.3 LAMEA Market size and forecast, by Platform Opeations
8.5.4 LAMEA Market size and forecast, by Range
8.5.5 LAMEA Market size and forecast, by Platform Architecture
8.5.6 LAMEA Market size and forecast, by country
8.5.6.1 Brazil
8.5.6.1.1 Market size and forecast, by Platform
8.5.6.1.2 Market size and forecast, by Platform Opeations
8.5.6.1.3 Market size and forecast, by Range
8.5.6.1.4 Market size and forecast, by Platform Architecture
8.5.6.2 UAE
8.5.6.2.1 Market size and forecast, by Platform
8.5.6.2.2 Market size and forecast, by Platform Opeations
8.5.6.2.3 Market size and forecast, by Range
8.5.6.2.4 Market size and forecast, by Platform Architecture
8.5.6.3 Saudi Arabia
8.5.6.3.1 Market size and forecast, by Platform
8.5.6.3.2 Market size and forecast, by Platform Opeations
8.5.6.3.3 Market size and forecast, by Range
8.5.6.3.4 Market size and forecast, by Platform Architecture
8.5.6.4 South Africa
8.5.6.4.1 Market size and forecast, by Platform
8.5.6.4.2 Market size and forecast, by Platform Opeations
8.5.6.4.3 Market size and forecast, by Range
8.5.6.4.4 Market size and forecast, by Platform Architecture
8.5.6.5 Rest of LAMEA
8.5.6.5.1 Market size and forecast, by Platform
8.5.6.5.2 Market size and forecast, by Platform Opeations
8.5.6.5.3 Market size and forecast, by Range
8.5.6.5.4 Market size and forecast, by Platform Architecture
CHAPTER 9: COMPANY LANDSCAPE
9.1. Introduction
9.2. Top winning strategies
9.3. Product Mapping of Top 10 Player
9.4. Competitive Dashboard
9.5. Competitive Heatmap
9.6. Key developments
CHAPTER 10: COMPANY PROFILES
10.1 Kitty Hawk
10.1.1 Company overview
10.1.2 Company snapshot
10.1.3 Operating business segments
10.1.4 Product portfolio
10.1.5 Business performance
10.1.6 Key strategic moves and developments
10.2 Volocopter GmbH
10.2.1 Company overview
10.2.2 Company snapshot
10.2.3 Operating business segments
10.2.4 Product portfolio
10.2.5 Business performance
10.2.6 Key strategic moves and developments
10.3 Lilium
10.3.1 Company overview
10.3.2 Company snapshot
10.3.3 Operating business segments
10.3.4 Product portfolio
10.3.5 Business performance
10.3.6 Key strategic moves and developments
10.4 The Boeing Company
10.4.1 Company overview
10.4.2 Company snapshot
10.4.3 Operating business segments
10.4.4 Product portfolio
10.4.5 Business performance
10.4.6 Key strategic moves and developments
10.5 EHang
10.5.1 Company overview
10.5.2 Company snapshot
10.5.3 Operating business segments
10.5.4 Product portfolio
10.5.5 Business performance
10.5.6 Key strategic moves and developments
10.6 Airbus
10.6.1 Company overview
10.6.2 Company snapshot
10.6.3 Operating business segments
10.6.4 Product portfolio
10.6.5 Business performance
10.6.6 Key strategic moves and developments
10.7 Neva Aerospace
10.7.1 Company overview
10.7.2 Company snapshot
10.7.3 Operating business segments
10.7.4 Product portfolio
10.7.5 Business performance
10.7.6 Key strategic moves and developments
10.8 Workhorse Group Inc.
10.8.1 Company overview
10.8.2 Company snapshot
10.8.3 Operating business segments
10.8.4 Product portfolio
10.8.5 Business performance
10.8.6 Key strategic moves and developments
10.9 Opener
10.9.1 Company overview
10.9.2 Company snapshot
10.9.3 Operating business segments
10.9.4 Product portfolio
10.9.5 Business performance
10.9.6 Key strategic moves and developments
10.10 Pipistrel Group
10.10.1 Company overview
10.10.2 Company snapshot
10.10.3 Operating business segments
10.10.4 Product portfolio
10.10.5 Business performance
10.10.6 Key strategic moves and developments
| ※参考情報 アーバンエアモビリティ(UAM)は、都市部において航空機を利用した輸送の新たな形態を指します。これは特に、ドローンや小型の電動垂直離着陸機(eVTOL)を用いた移動サービスを含み、都市の交通混雑の解消や環境負荷の低減を目指しています。UAMの目的は、効率的で迅速な移動手段を提供することで、都市生活の質を向上させることにあります。 UAMにはいくつかの種類があります。まずは、パーソナル空中移動手段としてのドローンタクシーが挙げられます。これは乗客を都市の異なる地点に迅速に移動させるためのサービスで、短距離の交通ニーズにも対応します。また、貨物輸送に特化した空中輸送ドローンも存在します。これにより、商業的な配送サービスや緊急物資の運搬が行えるようになり、特にリモートエリアや災害時において重要な役割を果たします。 UAMの用途は多岐にわたります。都市内の移動のほか、観光業における空中観光サービスや、救急医療輸送などが考えられます。また、物流分野では、倉庫からの配送や店舗間の商品の移動といった効率化が期待されており、特にラストワンマイル配送の解決策として検討されています。さらには、イベント時のアクセス向上や、交通事故による滞留時間の短縮にも資することが見込まれています。 UAMの実現には、いくつかの関連技術が必要です。まず、電動垂直離着陸機(eVTOL)の開発が重要です。これらの機体は、騒音や排出ガスを抑えた新たな移動手段として注目されており、高度な設計や材料が求められます。また、自動運転技術も欠かせません。自動運転システムは、操縦士の負担を軽減し、安全性を向上させることに寄与します。 さらに、空域管理システムの整備も必要です。UAMが商業化されることで、空域の利用が一層複雑になるため、他の航空機やドローンとの飛行経路の調整や衝突回避の仕組みが求められます。これにより、安全かつ効率的な空の移動が実現されるでしょう。また、地上インフラの整備も重要です。空港やヘリポートの利用、そして離着陸場の設置が都市の計画と連携しながら進められる必要があります。 また、UAMの普及には法律や規制面での整備も不可欠です。航空法や都市計画法、環境規制など、多岐にわたる法的枠組みの整備が求められます。これにより、利用者の安全を確保し、地域社会との調和を図ることが重要です。 エネルギー効率の向上もUAMの発展に寄与する要素です。電池技術の進展や再生可能エネルギーの利用が進むことで、UAMの運用コストや環境負荷を軽減することが可能になります。特に、飛行時間や航続距離を向上させるためのバッテリー開発は、UAM推進の一翼を担うでしょう。 さらに、UAMは地域活性化にも貢献する可能性があります。交通の利便性が高まることで、アクセスが容易になる地域は商業活動や観光の促進につながります。そのため、地域の経済が活性化し、新しいビジネスが生まれる機会が増えることでしょう。 現段階では、UAMの実現には多くの課題が残されていますが、技術革新や実証実験が進むことで、近い将来、都市の空の移動手段として定着することが期待されます。これにより、私たちの生活がより豊かに、便利になる日が来ることを願っています。 |
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