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미래의 모빌리티 : 모빌리티 상황을 형성하고 있는 원동력

Mobility of the Future: The Driving Forces that are Shaping the Mobility Landscape

리서치사 IDATE DigiWorld
발행일 2021년 05월 상품코드 1008911
페이지 정보 영문 63 Pages 배송안내 1-2일 (영업일 기준)
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US $ 2,750 ₩ 3,975,000 Web Access - PPT (Single Department License/1-5 Users)
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미래의 모빌리티 : 모빌리티 상황을 형성하고 있는 원동력 Mobility of the Future: The Driving Forces that are Shaping the Mobility Landscape
발행일 : 2021년 05월 페이지 정보 : 영문 63 Pages

본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문목차를 참고해주시기 바랍니다.

모빌리티의 이동에서 현재·향후 동향에 대해 검증했으며, 차량의 자동화, 에너지 효율, 기후변화, 소비자 우려, MaaS(Mobility as a Service), 신형 모빌리티에서의 구상, 주요 기업 10사의 사례 연구 등을 포함한 정보를 정리하여 전해드립니다.

지역적 범위 :

  • 북미
  • 유럽
  • 아시아태평양
  • 미국
  • 프랑스
  • 독일
  • 이탈리아
  • 스페인
  • 영국
  • 중국
  • 한국

게재 기업 :

  • Allianz
  • Amazon
  • Aptiv
  • Aurora
  • Automobile City
  • Baidu
  • Beeline
  • Beryl
  • BMW-Daimler(profile)
  • Bosch(profile)
  • BP
  • Citymapper
  • Communauto
  • Conduent
  • Continental AG
  • Daimler(profile)
  • Didi Chuxing
  • FCA
  • Fiat Chrysler
  • Ford
  • Geely
  • GKN
  • General Motors(profile)
  • Google Maps
  • Grab Taxi
  • Greenlines Technology
  • HERE Mobility
  • Honda
  • Hyundai
  • Innoviz
  • IONITY
  • Jewel
  • JLR
  • Jump
  • King Long
  • LG Chem
  • Lime(profile)
  • lntel
  • London Oyster
  • Lyft
  • MaaS Global(profile)
  • Magna
  • Masabi
  • Mercedes-Benz
  • Mitsubishi
  • Mobilleo
  • Moovel
  • Moovit
  • MTBA
  • NVIDIA
  • NZ Transport Agency
  • OV-chipkaart
  • Panasonic
  • Porsche
  • PSA Group
  • Qualcomm
  • RATP Group
  • REACH NOW
  • Rejsekort
  • Samsung
  • Sequoia Capital
  • Shanghai International
  • Shell
  • Siemens
  • Sila Nanotechnologies
  • Sked Go
  • Solid Power
  • Spotify
  • Switch Mobility
  • Tesla(profile)
  • Torc Robotics
  • Transdev
  • Trip Go
  • Trulia
  • Uber(profile)
  • Ubigo
  • Virgin
  • Volkswagen
  • Volvo
  • Waymo(profile)
  • Wheels
  • Whim
  • Yandex Taxi

목차

제1장 개요

제2장 전기자동차(EV)

  • 정의의 개선
  • 전기자동차(EV)의 주요 이네이블러
  • 전기자동차(EV)의 성능
  • 전기자동차(EV) 밸류체인
  • 전기자동차(EV)의 에코시스템
  • 촉진요인과 장벽

제3장 차량 자동화

  • 자율주행차(AV) : 정의
  • 자율주행의 레벨
  • MaaS의 주력 사용 사례 개요
  • 주요 기술
  • 기술과 관련 과제
  • 전 세계의 트라이얼
  • 자율주행차(AV) 밸류체인
  • 자율주행 에코시스템
  • 자율주행차(AV)의 가능성
  • 촉진요인과 장벽

제4장 MaaS

  • 정의
  • MaaS의 주력 사용 사례 개요
  • 주요 이네이블러
  • 운송 서비스의 최적화 : MaaS의 등장에서 제1단계
  • 포커스 : 증가중인 마이크로모빌리티 부문
  • MaaS 밸류체인
  • MaaS 에코시스템
  • 주요 비지니스 모델
  • MaaS 에코시스템 전략
  • 세계의 MaaS 프로젝트 상황
  • 주요 구상 : MaaS 기업별
  • 과제
  • 촉진요인과 장벽

제5장 기업 개요

  • BMW
  • WAYMO
  • General Motors
  • Tesla
  • Lime
  • Uber
  • Daimler
  • MaaS Global
  • Citymapper
  • Bosch

제6장 시장 규모

  • 촉진요인과 장벽
  • 증가중인 마이크로모빌리티
  • 자율주행차(AV) : 과대광고 후
KSA 21.07.01

The report reviews the current and foreseeable trends in the transition of mobility, where much is on the move.

The study starts by explaining the dynamic of the push towards innovation in the powering of vehicles - increasingly through electrification. Running through the fast-evolving levels in the automation of vehicles, it continues by examining the pull of such external factors as energy efficiency, climate change and consumer concerns.

Together, these drivers are remodelling mobility as a service - at the service of manufacturers, consumers, the environment and social transformation.

The well-illustrated mapping of initiatives in new forms of mobility - with some one hundred projects in the three regions of North America, Europe and Asia-Pacific - is rounded off by detailed case studies of ten major players both in technology and in overall strategy.

The resulting raft of internal and external forces combined, coupled with the emergence of new logistics such as micromobility, is rewriting the nature of the overall market. This is set to grow phenomenally across the globe, with Asia-Pacific in pole position.

Geographical coverage:

  • North America
  • Europe
  • Asia-Pacific
  • United States
  • France
  • Germany
  • Italy
  • Spain
  • United Kingdom
  • China
  • South Korea

Companies Mentioned:

  • Allianz
  • Amazon
  • Aptiv
  • Aurora
  • Automobile City
  • Baidu
  • Beeline
  • Beryl
  • BMW-Daimler (profile)
  • Bosch (profile)
  • BP
  • Citymapper
  • Communauto
  • Conduent
  • Continental AG
  • Daimler (profile)
  • Didi Chuxing
  • FCA
  • Fiat Chrysler
  • Ford
  • Geely
  • GKN
  • General Motors (profile)
  • Google Maps
  • Grab Taxi
  • Greenlines Technology
  • HERE Mobility
  • Honda
  • Hyundai
  • Innoviz
  • IONITY
  • Jewel
  • JLR
  • Jump
  • King Long
  • LG Chem
  • Lime (profile)
  • lntel
  • London Oyster
  • Lyft
  • MaaS Global (profile)
  • Magna
  • Masabi
  • Mercedes-Benz
  • Mitsubishi
  • Mobilleo
  • Moovel
  • Moovit
  • MTBA
  • NVIDIA
  • NZ Transport Agency
  • OV-chipkaart
  • Panasonic
  • Porsche
  • PSA Group
  • Qualcomm
  • RATP Group
  • REACH NOW
  • Rejsekort
  • Samsung
  • Sequoia Capital
  • Shanghai International
  • Shell
  • Siemens
  • Sila Nanotechnologies
  • Sked Go
  • Solid Power
  • Spotify
  • Switch Mobility
  • Tesla (profile)
  • Torc Robotics
  • Transdev
  • Trip Go
  • Trulia
  • Uber (profile)
  • Ubigo
  • Virgin
  • Volkswagen
  • Volvo
  • Waymo (profile)
  • Wheels
  • Whim
  • Yandex Taxi

Table of Contents

1. Executive Summary

2. E-Vehicles

  • 2.1. Refining the definitions
  • 2.2. The key enablers of the e-vehicle
  • 2.3. E-vehicles performances
  • 2.4. E-vehicles value chain
  • 2.5. The ecosystem of the e-vehicle
  • 2.6. Drivers and barriers

3. Vehicle Automation

  • 3.1. Autonomous vehicles: definitions
  • 3.2. Levels of autonomous driving
  • 3.3. Overview of flagship use cases in MaaS
  • 3.4. Key technologies
    • 3.4.1. Surroundings detection
    • 3.4.2. Connectivity and communication : V2V, V2X
    • 3.4.3. Connectivity and communication : GNSS & HD mapping
  • 3.5. Technologies and related challenges
  • 3.6. Trials throughout the world
  • 3.7. Automated vehicles value chain
  • 3.8. Autonomous driving ecosystem
    • 3.8.1. Overview of autonomous car manufacturers strategies
    • 3.8.2. Autonomous driving ecosystem strategies
    • 3.8.3. Overview of autonomous driving market maturity
    • 3.8.4. Mapping of main players
  • 3.9. Autonomous car potential
  • 3.10. Drivers and barriers

4. Mobility as a Service

  • 4.1. Definitions
  • 4.2. Overview of flagship use cases in MaaS
  • 4.3. Key enablers
  • 4.4. Optimising transport services: the first step in the emergence of MaaS
  • 4.5. Focus: micromobility sector is on the rise
  • 4.6. MaaS value chain
  • 4.7. MaaS ecosystem
  • 4.8. Key business models
  • 4.9. MaaS ecosystem strategies
  • 4.10. State of MaaS projects worldwide
  • 4.11. Main initiatives by MaaS players
  • 4.12. Challenges
  • 4.13. Drivers and barriers

5. Player profiles

  • 5.1. BMW
  • 5.2. WAYMO
  • 5.3. General Motors
  • 5.4. Tesla
  • 5.5. Lime
  • 5.6. Uber
  • 5.7. Daimler
  • 5.8. MaaS Global
  • 5.9. Citymapper
  • 5.10. Bosch

6. Market sizing

  • 6.1. Drivers and barriers
  • 6.2. Micromobility on the rise
  • 6.3. Autonomous vehicles: After the hype

List of tables and figures

2. E-vehicles

  • BEV, HEV and PHEV
  • Charging times comparison by level
  • E-vehicles value chain

3. Vehicle automation

  • The six levels of autonomous driving
  • Overview of automated vehicles use cases
  • Comparison of main sensors used for self-driving cars
  • Number of cities with trials and initiatives around autonomous cars
  • Automated vehicles value chain
  • Autonomous driving ecosystem strategies
  • Mapping of main players in the autonomous driving ecosystem

4. Mobility as a Service

  • Overview of MaaS use cases
  • MaaS key enablers
  • MaaS value proposition
  • MaaS value chain
  • MaaS key business models
  • MaaS ecosystem strategies
  • MaaS regulatory landscape

6. Market sizing

  • Evolution of shared mobility fleet, by type of vehicle
  • Evolution of shared mobility fleet, by region
  • Evolution of the autonomous vehicle installed base, by level of autonomy
  • Evolution of the autonomous vehicle installed base, by level of autonomy, by region
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