Global Autonomous Shared Mobility Growth Opportunities

Global Autonomous Shared Mobility Growth Opportunities

Evolving Technological Landscape and Regulatory Progress Drive New Business Models, Entrants, and Solutions on the Road to Commercialization

RELEASE DATE
09-Feb-2022
REGION
Global
Research Code: PC74-01-00-00-00
SKU: AU02291-GL-MT_26252
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Description

Autonomous shared mobility technology, after years of development and testing in the real world, is on the verge of reaching commercial viability on a large scale. In 2021, the global market opportunity from autonomous mobility was approximately $27 million. This is expected to reach $92 billion in 2035, accounting for the market changes brought on by the COVID-19 pandemic.

Governments across the world are looking to discourage private vehicle travel and to shift intra-city commuting toward greener public transport systems. In the context of this study, autonomous shared mobility is defined as transportation solutions that do not require the presence of a human driver and are represented as self-driven taxis called robotaxis and self-driven shuttles called autonomous shuttles. The importance of these forms of autonomous mobility is rooted in their ability to reduce the costs of on-demand transportation per kilometer, reduce accidents and road fatalities, and contribute to achieving emission norms and climate goals.

Autonomous mobility solutions like shuttles will play a key role in de-congesting city centers and providing public transport in rural areas. Autonomous vehicles by design can have high utilization figures and get optimized to match demand. While robotaxis are expected to replace the traditional taxi fleet and connected-car ride-hailing fleet, the favorable rider economics and schedule flexibility will cause some private car journeys to shift to robotaxis as well. Meanwhile, autonomous shuttles are expected to deploy on short urban and rural routes as last-mile connectivity between transport hubs and destinations and in areas where scheduled bus services are unviable.

Research Scope

This study examines the growth drivers of autonomous mobility and the key trends that will impact its penetration into current mobility networks.  The scope of the study is focused on the robotaxi and autonomous shuttle sub-segments, including a global overview and analysis of key regions. In addition, the present day scenario, regulatory timeline, business models, market outlook, and growth opportunities for autonomous mobility are covered. Last, key stakeholders are discussed, with insight into how the ecosystem is evolving, where funding sources stem from, and which companies and up and coming.

Author: Avishar Dutta

 


Table of Contents

Why is it Increasingly Difficult to Grow?

The Strategic Imperative 8™

The Impact of the Top 3 Strategic Imperatives on the Autonomous Shared Mobility Market

Growth Opportunities Fuel the Growth Pipeline Engine™

Overview of the Autonomous Shared Mobility Market

Definition and Market Segmentation

Highlights of the Global Autonomous Shared Mobility Market

Global—Mapping of Vital Pilot Projects

Stakeholders

Growth Drivers for the Autonomous Shared Mobility Market

Growth Restraints for the Autonomous Shared Mobility Market

Key Growth Metrics for Autonomous Shared Mobility

Robotaxi Competitiveness

Forecast Assumptions, Autonomous Shuttle Market

Forecast Assumptions, Robotaxi Market

Overall Autonomous Mobility Revenue and Fleet Size Forecast

Robotaxi and Autonomous Shuttle Revenue Forecast

Robotaxi and Autonomous Shuttle Fleet Size Forecast Global

Robotaxi and Autonomous Shuttle Revenue Regional Forecast

Robotaxi and Autonomous Shuttle Fleet Size Regional Forecast

Metrics for the Global Benchmarking of Autonomous Shared Mobility

Regional Analysis, Autonomous Shared Mobility Market

Regional Analysis, Autonomous Shared Mobility Market (continued)

The Way Forward—Autonomous Shuttles and Robotaxis

Competitive Environment, Autonomous Shared Mobility

Key Competitors in the Autonomous Shared Mobility Market

Value Chain and Business Models, Autonomous Shuttles

Value Chain and Business Models, Robotaxis

Market Potential for Autonomous Shared Vehicles across Applications

Autonomous Shared Vehicles and Cost Remodeling, 2021 versus 2025

Major OEM Strategy—Autonomous Mobility Market

Global Autonomous Shared Mobility Partnership Ecosystem

Technology Roadmap for SAE Level 5 Autonomous Vehicles

Growth Opportunities in Autonomous Shared Mobility

Key Market Trends

Trend 1—Technological Innovation to Decrease Hardware Costs

Trend 2—Autonomous Vehicle Design Evolution

Trend 3—Autonomous Mobility Development Funding to Attract OEMs

Trend 4—Dedicated Autonomous Mobility Testing Sites

Trend 5—Evolving Autonomous Mobility Ecosystem

Trend 6—Autonomous Shuttles and Robotaxis Integration with Mobility-as-a-Service (MaaS) Platforms

NA—Key Growth Metrics for Autonomous Shared Mobility

NA Autonomous Shared Mobility Revenue and Fleet Size Forecast

NA Autonomous Shared Mobility Revenue Forecast by Segment

NA Autonomous Shared Mobility Fleet Size Forecast by Segment

NA Roadmap of the Autonomous Shared Mobility Market

NA PESTLE Analysis

NA Regulatory Trends

NA Market Developments

NA Sub-regional Areas for Autonomous Shared Mobility

NA Competitive Landscape for Autonomous Shuttles

NA Competitive Landscape for Robotaxis

NA Autonomous Shared Mobility Market Outlook

Europe—Key Growth Metrics for Autonomous Shared Mobility

Europe Autonomous Shared Mobility Revenue and Fleet Size Forecast

Europe Autonomous Shared Mobility Revenue Forecast by Segment

Europe Autonomous Shared Mobility Fleet Size Forecast by Segment

Market Developments

Roadmap of the Autonomous Mobility Market in Europe

PESTLE Analysis

Regulatory Trends

Europe Sub-regional Areas for Autonomous Shared Mobility

Europe Sub-regional Areas for Autonomous Shared Mobility (continued)

Competitive Landscape—Autonomous Shuttles

Competitive Landscape—Robotaxis

Autonomous Mobility Market Outlook

APAC—Key Growth Metrics for Autonomous Shared Mobility

APAC Autonomous Shared Mobility Revenue and Fleet Size Forecast

APAC Autonomous Shared Mobility Revenue Forecast by Segment

APAC Autonomous Shared Mobility Fleet Size Forecast by Segment

China—Market Developments

China—Roadmap of Autonomous Shared Mobility Market

China—PESTLE Analysis

China—Regulatory Trends

China—Competitive Landscape for Autonomous Shuttles

China—Competitive Landscape for Robotaxis

China—Autonomous Mobility Market Outlook

Singapore—Regional Outlook

Singapore—PESTLE Analysis

South Korea—Regional Outlook

South Korea—PESTLE Analysis

Japan—Regional Outlook

Japan—PESTLE Analysis

Company Profile—Local Motors

Company Profile—Einride

Company Profile—MooVita

Growth Opportunity 1—Autonomous Mobility Management Solutions for Cities

Growth Opportunity 1—Autonomous Mobility Management Solutions for Cities (continued)

Growth Opportunity 2—Hub-to-hub Commercialization of Robotaxi Services

Growth Opportunity 2—Hub-to-hub Commercialization of Robotaxi Services (continued)

Growth Opportunity 3—Autonomous Driving-as-a-Service

Growth Opportunity 3—Autonomous Driving-as-a-Service (continued)

Your Next Steps

Why Frost, Why Now?

List of Exhibits

List of Exhibits (continued)

List of Exhibits (continued)

List of Exhibits (continued)

List of Exhibits (continued)

Legal Disclaimer

Autonomous shared mobility technology, after years of development and testing in the real world, is on the verge of reaching commercial viability on a large scale. In 2021, the global market opportunity from autonomous mobility was approximately $27 million. This is expected to reach $92 billion in 2035, accounting for the market changes brought on by the COVID-19 pandemic. Governments across the world are looking to discourage private vehicle travel and to shift intra-city commuting toward greener public transport systems. In the context of this study, autonomous shared mobility is defined as transportation solutions that do not require the presence of a human driver and are represented as self-driven taxis called robotaxis and self-driven shuttles called autonomous shuttles. The importance of these forms of autonomous mobility is rooted in their ability to reduce the costs of on-demand transportation per kilometer, reduce accidents and road fatalities, and contribute to achieving emission norms and climate goals. Autonomous mobility solutions like shuttles will play a key role in de-congesting city centers and providing public transport in rural areas. Autonomous vehicles by design can have high utilization figures and get optimized to match demand. While robotaxis are expected to replace the traditional taxi fleet and connected-car ride-hailing fleet, the favorable rider economics and schedule flexibility will cause some private car journeys to shift to robotaxis as well. Meanwhile, autonomous shuttles are expected to deploy on short urban and rural routes as last-mile connectivity between transport hubs and destinations and in areas where scheduled bus services are unviable.--BEGIN PROMO--

Research Scope

This study examines the growth drivers of autonomous mobility and the key trends that will impact its penetration into current mobility networks.  The scope of the study is focused on the robotaxi and autonomous shuttle sub-segments, including a global overview and analysis of key regions. In addition, the present day scenario, regulatory timeline, business models, market outlook, and growth opportunities for autonomous mobility are covered. Last, key stakeholders are discussed, with insight into how the ecosystem is evolving, where funding sources stem from, and which companies and up and coming.

Author: Avishar Dutta

 

More Information
No Index No
Podcast No
Author Avishar Dutta
Industries Automotive
WIP Number PC74-01-00-00-00
Keyword 1 Shared Mobility
Keyword 2 Mobility Car Sharing
Keyword 3 Shared Mobility Services
Is Prebook No
GPS Codes 9800-A6,9A57-A6,9B13-A6