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Autonomous Bus Door System Market by Bus Type, Door Type, Mechanism, Level of Automation, Propulsion Type and by Component: Global Opportunity Analysis and Industry Forecast, 2020-2027

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    Report

  • 280 Pages
  • April 2020
  • Region: Global
  • Allied Market Research
  • ID: 5118760
A self-driving bus is a robotic vehicle designed to travel between destinations without a human operator. They combine sensors and software to control, navigate, and drive the vehicle. This vehicle uses LiDAR and RADAR and several other sensors for its operations. Bus door system is a hinged piece or object that allows entry/exit of the passengers. Many companies are developing these door systems in innovative manner. For instance, Schaltbau Holding offers smart door systems/intelligent door systems for self-driving shuttle buses and other vehicle concepts. There is a wide range of products of bus door systems. Electric inward swinging doors, pneumatic inward swinging doors, pneumatic outward swinging doors are a few examples of these systems.

The autonomous bus door system market is driven by factors such as improved safety coupled with the reduction in traffic congestion, a rise of connected infrastructure, and increase in demand for fuel-efficient, high-performance, and low-emission vehicles. However, high manufacturing cost and data management challenges restrict market growth. Moreover, development of smart cities and supportive government regulations create lucrative growth opportunities for the market expansion.

The global autonomous bus door system market is segmented based on bus type, door type, mechanism, level of automation, propulsion type, component, and region. By bus type, the market is segmented into shuttle bus, city bus, intercity bus, coach, and BRT bus. Based on door type, the market is segmented into conventional doors, folding doors, sliding plug doors, coach doors, and inward gliding doors. Moreover, pneumatic and electric mechanisms are covered in the report. Level 4 and Level 5 are considered under level of automation segment. Based on propulsion type, the market is bifurcated into ICE, and electric. Further, the components segment consists of hardware, software as well as solutions. The hardware segment is sub-segmented into actuators, door controls, door panels, seals, door accessories, and others.

By region, the market is segmented into North America, Europe, Asia-Pacific, and Latin America, Middle East & Africa (LAMEA) including country-level analysis for each region.

The major companies profiled in the autonomous bus door system market include Bode Sud S.p.A., Vapor Bus International, Circle Bus Door Systems Co., Ltd., KBT GmbH, Masats LLC, PSV Transport Systems Ltd., Shavo Norgren (India) Pvt. Ltd., Transport Door Solutions Ltd., Ventura Systems CV, and Schaltbau Holding AG.

The report also covers company profiles of the players such as AV Volvo, Continental AG, Volkswagen AG, Tesla, Scania AB, Daimler AG, Proterra, Hyundai Motor Company, Hino Motors, Ltd., and Navya, which are operating in the global self-driving bus market. (Market size covers revenue generated by all players in the autonomous bus door system market).

KEY BENEFITS FOR STAKEHOLDERS
  • This study comprises analytical depiction of the autonomous bus door system market with current trends and future estimations to depict the imminent investment pockets.
  • The overall market potential is determined to understand the profitable trends to gain a stronger coverage in the market.
  • The report presents information related to key drivers, restraints, and opportunities with a detailed impact analysis.
  • The current market is quantitatively analyzed from 2019 to 2027 to highlight the financial competency of the market.
  • Porter’s five forces analysis illustrates the potency of the buyers and suppliers.

KEY MARKET SEGMENTS

By Bus Type
  • Shuttle bus
  • City bus
  • Intercity bus
  • Coach
  • BRT bus

By Door Type
  • Conventional doors
  • Folding doors
  • Sliding plug doors
  • Coach doors
  • Inward gliding doors

By Mechanism
  • Pneumatic
  • Electric

By Level of Automation
  • Level 4
  • Level 5

By Propulsion Type
  • ICE
  • Electric

By Component
  • Hardware
  • Actuators
  • Door Controls
  • Door Panels
  • Seals
  • Door accessories
  • Others
  • Software
  • Services

By Region
  • North America
  • U.S.
  • Canada
  • Mexico
  • Europe
  • UK
  • Germany
  • France
  • Russia
  • Italy
  • Turkey
  • Spain
  • Rest of Europe
  • Asia-Pacific
  • China
  • India
  • Japan
  • South Korea
  • Rest of Asia-Pacific
  • LAMEA
  • Latin America
  • Middle East
  • Africa

Key Market Players (Autonomous Bus Door System Market)
  • Bode Sud S.p.A.
  • Vapor Bus International
  • Circle Bus Door Systems Co., Ltd.
  • KBT GmbH
  • Masats LLC
  • PSV Transport Systems Ltd.
  • Shavo Norgren (India) Pvt. Ltd.
  • Transport Door Solutions Ltd.
  • Ventura Systems CV
  • Schaltbau Holding AG

Key Market Players (Self-Driving Bus Market)
  • AV Volvo
  • Continental AG
  • Volkswagen AG
  • Tesla
  • Scania AB
  • Daimler AG
  • Proterra
  • Hyundai Motor Company
  • Hino Motors, Ltd.
  • Navya

Table of Contents

Chapter 1: Introduction
1.1. Report Description
1.2. Key Benefits for Stakeholders
1.3. Key Market Segments
1.4. Research Methodology
1.4.1. Primary Research
1.4.2. Secondary Research
1.4.3. Analyst Tools and Models
Chapter 2: Executive Summary
2.1. Cxo Perspective
Chapter 3: Market Overview
3.1. Market Definition and Scope
3.2. Key Findings
3.2.1. Top Impacting Factors
3.2.2. Top Investment Pockets
3.3. Porter’S Five Forces Analysis
3.4. Key Player Positioning (2019)
3.5. Market Dynamics
3.5.1. Drivers
3.5.1.1. Improved Safety Coupled With the Reduction in Traffic Congestion
3.5.1.2. Growth of Connected Infrastructure
3.5.1.3. Increase in Demand for Fuel-Efficient, High-Performance, and Low-Emission Vehicles
3.5.2. Restraints
3.5.2.1. High Manufacturing Cost
3.5.2.2. Data Management Challenges
3.5.3. Opportunities
3.5.3.1. Development of Smart Cities
3.5.3.2. Supportive Government Regulations
Chapter 4: Global Autonomous Bus Door System Market, Bus Type
4.1. Overview
4.2. Shuttle Bus
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. City Bus
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. Intercity Bus
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. Coach
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. Bus Rapid Transit (Brt) Bus
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
Chapter 5: Global Autonomous Bus Door System Market, by Door Type
5.1. Overview
5.2. Conventional Doors
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. Folding Doors
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
5.4. Sliding Plug Doors
5.4.1. Key Market Trends, Growth Factors and Opportunities
5.4.2. Market Size and Forecast, by Region
5.4.3. Market Analysis by Country
5.5. Coach Doors
5.5.1. Key Market Trends, Growth Factors and Opportunities
5.5.2. Market Size and Forecast, by Region
5.5.3. Market Analysis by Country
5.6. Inward Gliding Doors
5.6.1. Key Market Trends, Growth Factors and Opportunities
5.6.2. Market Size and Forecast, by Region
5.6.3. Market Analysis by Country
Chapter 6: Global Autonomous Bus Door System Market, by Mechanism
6.1. Overview
6.2. Pneumatic
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. Electric
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: Global Autonomous Bus Door System Market, by Level of Automation
7.1. Overview
7.2. Level 4
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. Level 5
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: Global Autonomous Bus Door System Market, by Prpulsion Type
8.1. Overview
8.2. Ice
8.2.1. Key Market Trends, Growth Factors and Opportunities
8.2.2. Market Size and Forecast, by Region
8.2.3. Market Analysis by Country
8.3. Electric
8.3.1. Key Market Trends, Growth Factors and Opportunities
8.3.2. Market Size and Forecast, by Region
8.3.3. Market Analysis by Country
Chapter 9: Global Autonomous Bus Door System Market, by Component
9.1. Overview
9.2. Hardware
9.2.1. Key Market Trends, Growth Factors and Opportunities
9.2.2. Market Size and Forecast, by Region
9.2.3. Market Analysis by Country
9.2.4. Actuators
9.2.5. Door Controls
9.2.6. Door Panels
9.2.7. Seals
9.2.8. Door Accessories
9.2.9. Others
9.3. Software
9.3.1. Key Market Trends, Growth Factors and Opportunities
9.3.2. Market Size and Forecast, by Region
9.3.3. Market Analysis by Country
9.4. Solution
9.4.1. Key Market Trends, Growth Factors and Opportunities
9.4.2. Market Size and Forecast, by Region
9.4.3. Market Analysis by Country
Chapter 10: Autonomous Bus Door System Market, by Region
10.1. Overview
10.2. North America
10.2.1. Market Size and Forecast, by Bus Type
10.2.2. Market Size and Forecast, by Door Type
10.2.3. Market Size and Forecast, by Mechanism
10.2.4. Market Size and Forecast, by Level of Automation
10.2.5. Market Size and Forecast, by Propulsion Type
10.2.6. Market Size and Forecast, by Component
10.2.7. Market Size and Forecast, by Country
10.2.7.1. U. S.
10.2.7.1.1. Market Size and Forecast, by Bus Type
10.2.7.1.2. Market Size and Forecast, by Door Type
10.2.7.1.3. Market Size and Forecast, by Mechanism
10.2.7.1.4. Market Size and Forecast, by Level of Automation
10.2.7.1.5. Market Size and Forecast, by Propulsion Type
10.2.7.1.6. Market Size and Forecast, by Component
10.2.7.2. Canada
10.2.7.2.1. Market Size and Forecast, by Bus Type
10.2.7.2.2. Market Size and Forecast, by Door Type
10.2.7.2.3. Market Size and Forecast, by Mechanism
10.2.7.2.4. Market Size and Forecast, by Level of Automation
10.2.7.2.5. Market Size and Forecast, by Propulsion Type
10.2.7.2.6. Market Size and Forecast, by Component
10.2.7.3. Mexico
10.2.7.3.1. Market Size and Forecast, by Bus Type
10.2.7.3.2. Market Size and Forecast, by Door Type
10.2.7.3.3. Market Size and Forecast, by Mechanism
10.2.7.3.4. Market Size and Forecast, by Level of Automation
10.2.7.3.5. Market Size and Forecast, by Propulsion Type
10.2.7.3.6. Market Size and Forecast, by Component
10.3. Europe
10.3.1. Market Size and Forecast, by Bus Type
10.3.2. Market Size and Forecast, by Door Type
10.3.3. Market Size and Forecast, by Mechanism
10.3.4. Market Size and Forecast, by Level of Automation
10.3.5. Market Size and Forecast, by Propulsion Type
10.3.6. Market Size and Forecast, by Component
10.3.7. Market Size and Forecast, by Country
10.3.7.1. UK
10.3.7.1.1. Market Size and Forecast, by Bus Type
10.3.7.1.2. Market Size and Forecast, by Door Type
10.3.7.1.3. Market Size and Forecast, by Mechanism
10.3.7.1.4. Market Size and Forecast, by Level of Automation
10.3.7.1.5. Market Size and Forecast, by Propulsion Type
10.3.7.1.6. Market Size and Forecast, by Component
10.3.7.2. Germany
10.3.7.2.1. Market Size and Forecast, by Bus Type
10.3.7.2.2. Market Size and Forecast, by Door Type
10.3.7.2.3. Market Size and Forecast, by Mechanism
10.3.7.2.4. Market Size and Forecast, by Level of Automation
10.3.7.2.5. Market Size and Forecast, by Propulsion Type
10.3.7.2.6. Market Size and Forecast, by Component
10.3.7.3. France
10.3.7.3.1. Market Size and Forecast, by Bus Type
10.3.7.3.2. Market Size and Forecast, by Door Type
10.3.7.3.3. Market Size and Forecast, by Mechanism
10.3.7.3.4. Market Size and Forecast, by Level of Automation
10.3.7.3.5. Market Size and Forecast, by Propulsion Type
10.3.7.3.6. Market Size and Forecast, by Component
10.3.7.4. Russia
10.3.7.4.1. Market Size and Forecast, by Bus Type
10.3.7.4.2. Market Size and Forecast, by Door Type
10.3.7.4.3. Market Size and Forecast, by Mechanism
10.3.7.4.4. Market Size and Forecast, by Level of Automation
10.3.7.4.5. Market Size and Forecast, by Propulsion Type
10.3.7.4.6. Market Size and Forecast, by Component
10.3.7.5. Italy
10.3.7.5.1. Market Size and Forecast, by Bus Type
10.3.7.5.2. Market Size and Forecast, by Door Type
10.3.7.5.3. Market Size and Forecast, by Mechanism
10.3.7.5.4. Market Size and Forecast, by Level of Automation
10.3.7.5.5. Market Size and Forecast, by Propulsion Type
10.3.7.5.6. Market Size and Forecast, by Component
10.3.7.6. Turkey
10.3.7.6.1. Market Size and Forecast, by Bus Type
10.3.7.6.2. Market Size and Forecast, by Door Type
10.3.7.6.3. Market Size and Forecast, by Mechanism
10.3.7.6.4. Market Size and Forecast, by Level of Automation
10.3.7.6.5. Market Size and Forecast, by Propulsion Type
10.3.7.6.6. Market Size and Forecast, by Component
10.3.7.7. Spain
10.3.7.7.1. Market Size and Forecast, by Bus Type
10.3.7.7.2. Market Size and Forecast, by Door Type
10.3.7.7.3. Market Size and Forecast, by Mechanism
10.3.7.7.4. Market Size and Forecast, by Level of Automation
10.3.7.7.5. Market Size and Forecast, by Propulsion Type
10.3.7.7.6. Market Size and Forecast, by Component
10.3.7.8. Rest of Europe
10.3.7.8.1. Market Size and Forecast, by Bus Type
10.3.7.8.2. Market Size and Forecast, by Door Type
10.3.7.8.3. Market Size and Forecast, by Mechanism
10.3.7.8.4. Market Size and Forecast, by Level of Automation
10.3.7.8.5. Market Size and Forecast, by Propulsion Type
10.3.7.8.6. Market Size and Forecast, by Component
10.4. Asia-Pacific
10.4.1. Market Size and Forecast, by Bus Type
10.4.2. Market Size and Forecast, by Door Type
10.4.3. Market Size and Forecast, by Mechanism
10.4.4. Market Size and Forecast, by Level of Automation
10.4.5. Market Size and Forecast, by Propulsion Type
10.4.6. Market Size and Forecast, by Component
10.4.7. Market Size and Forecast, by Country
10.4.7.1. China
10.4.7.1.1. Market Size and Forecast, by Bus Type
10.4.7.1.2. Market Size and Forecast, by Door Type
10.4.7.1.3. Market Size and Forecast, by Mechanism
10.4.7.1.4. Market Size and Forecast, by Level of Automation
10.4.7.1.5. Market Size and Forecast, by Propulsion Type
10.4.7.1.6. Market Size and Forecast, by Component
10.4.7.2. Japan
10.4.7.2.1. Market Size and Forecast, by Bus Type
10.4.7.2.2. Market Size and Forecast, by Door Type
10.4.7.2.3. Market Size and Forecast, by Mechanism
10.4.7.2.4. Market Size and Forecast, by Level of Automation
10.4.7.2.5. Market Size and Forecast, by Propulsion Type
10.4.7.2.6. Market Size and Forecast, by Component
10.4.7.3. India
10.4.7.3.1. Market Size and Forecast, by Bus Type
10.4.7.3.2. Market Size and Forecast, by Door Type
10.4.7.3.3. Market Size and Forecast, by Mechanism
10.4.7.3.4. Market Size and Forecast, by Level of Automation
10.4.7.3.5. Market Size and Forecast, by Propulsion Type
10.4.7.3.6. Market Size and Forecast, by Component
10.4.7.4. Australia
10.4.7.4.1. Market Size and Forecast, by Bus Type
10.4.7.4.2. Market Size and Forecast, by Door Type
10.4.7.4.3. Market Size and Forecast, by Mechanism
10.4.7.4.4. Market Size and Forecast, by Level of Automation
10.4.7.4.5. Market Size and Forecast, by Propulsion Type
10.4.7.4.6. Market Size and Forecast, by Component
10.4.7.5. Rest of Asia-Pacific
10.4.7.5.1. Market Size and Forecast, by Bus Type
10.4.7.5.2. Market Size and Forecast, by Door Type
10.4.7.5.3. Market Size and Forecast, by Mechanism
10.4.7.5.4. Market Size and Forecast, by Level of Automation
10.4.7.5.5. Market Size and Forecast, by Propulsion Type
10.4.7.5.6. Market Size and Forecast, by Component
10.5. LAMEA
10.5.1. Market Size and Forecast, by Bus Type
10.5.2. Market Size and Forecast, by Door Type
10.5.3. Market Size and Forecast, by Mechanism
10.5.4. Market Size and Forecast, by Level of Automation
10.5.5. Market Size and Forecast, by Propulsion Type
10.5.6. Market Size and Forecast, by Component
10.5.7. Market Size and Forecast, by Country
10.5.7.1. Latin America
10.5.7.1.1. Market Size and Forecast, by Bus Type
10.5.7.1.2. Market Size and Forecast, by Door Type
10.5.7.1.3. Market Size and Forecast, by Mechanism
10.5.7.1.4. Market Size and Forecast, by Level of Automation
10.5.7.1.5. Market Size and Forecast, by Propulsion Type
10.5.7.1.6. Market Size and Forecast, by Component
10.5.7.2. Middle East
10.5.7.2.1. Market Size and Forecast, by Bus Type
10.5.7.2.2. Market Size and Forecast, by Door Type
10.5.7.2.3. Market Size and Forecast, by Mechanism
10.5.7.2.4. Market Size and Forecast, by Level of Automation
10.5.7.2.5. Market Size and Forecast, by Propulsion Type
10.5.7.2.6. Market Size and Forecast, by Component
10.5.7.3. Africa
10.5.7.3.1. Market Size and Forecast, by Bus Type
10.5.7.3.2. Market Size and Forecast, by Door Type
10.5.7.3.3. Market Size and Forecast, by Mechanism
10.5.7.3.4. Market Size and Forecast, by Level of Automation
10.5.7.3.5. Market Size and Forecast, by Propulsion Type
10.5.7.3.6. Market Size and Forecast, by Component

Executive Summary

According to the report titled, 'Autonomous Bus Door System Market by Bus Type, Door Type, Mechanism, Level of Automation, Propulsion Type, and Component: Opportunity Analysis and Industry Forecast, 2020-2030', the global autonomous bus door system market was valued at $3.9 million in 2019, and is projected to reach $77.0 million by 2027, registering a CAGR of 43.8% from 2020 to 2027.

At present, the U.S. dominates the market, followed by Canada and Mexico in North America. However, Mexico is expected to grow at a higher CAGR during the forecast period. In addition, in 2019, China led the market in the Asia-Pacific region followed by India, South Korea, Japan, and rest of Asia-Pacific countries.

Factors such as improved safety coupled with the reduction in traffic congestion, rise in connected infrastructure, and increase in demand for fuel-efficient, high-performance, and low-emission vehicles are driving the autonomous bus door module market growth. However, high manufacturing cost, and data management challenges are expected to impede the stated autonomous bus door system market growth.

With the rapid adoption of Internet of Things (IoT), transportation infrastructure across the globe is evolving quickly. Companies such as Cisco and IBM have created digital platforms, which can automate street and traffic lights, optimize trash pickup, and augment surveillance. For instance, installation of IoT sensors in the streets of Las Vegas has managed to control traffic congestion and solve environmental issues. Connected infrastructure includes car parking, toll booths, and smart-street and traffic lights.

Thus, growth of connected infrastructure creates favorable conditions for adoption of autonomous bus, which, in turn, drives the growth of the bus door system market.

Smart cities are experiencing considerable growth across the globe. Emergence of disruptive technologies such as IoT and connected devices also lead to the development of smart transportation in smart cities. Advancement in IoT and cloud-based platforms has led to significant investment in smart cities. Several countries focus on transportation under smart cities initiative. For instance, Chinese government is working on programs for an autonomous driving revolution. Around 300 Chinese cities, which include Xinjiang and Nanjing, have introduced smart-city projects out of which 93 of the smart city projects are focused on transportation. These can potentially use the connected infrastructure to focus on building autonomous cars, self-driving buses and shared-driving models on the road. Furthermore, in September 2017, Baidu, a China-based technology company announced a $1.52 billion autonomous-driving initiative, which is called "Apollo Fund." This initiative is projected to invest in 100 autonomous driving projects till 2021. Further, global spending on smart city initiatives is expected to surpass $100 billion. Thus, development of smart cities holds a remarkable growth opportunity for the key players operating in the global autonomous bus door system market.

Key Findings Of The Study

By mechanism, the electric segment generated the highest revenue in 2019.
By region, Asia-Pacific is anticipated to exhibit the highest CAGR during the forecast period while considering the autonomous bus door system market growth.
By door type, the sliding plug door dominated the global market in terms of revenue in 2019.
Latin America leads the market in the LAMEA region.

The key players profiled in the autonomous bus door system market share include Bode Sud S.p.A., Vapor Bus International, Circle Bus Door Systems Co., Ltd., KBT GmbH, Masats LLC, PSV Transport Systems Ltd., Shavo Norgren (India) Pvt. Ltd., Transport Door Solutions Ltd., Ventura Systems CV, and Schaltbau Holding AG.

Companies Mentioned

  • Bode Sud S.p.A.
  • Vapor Bus International
  • Circle Bus Door Systems Co. Ltd.
  • KBT GmbH
  • Masats LLC
  • PSV Transport Systems Ltd.
  • Shavo Norgren (India) Pvt. Ltd.
  • Transport Door Solutions Ltd.
  • Ventura Systems CV
  • Schaltbau Holding AG

Methodology

The analyst offers exhaustive research and analysis based on a wide variety of factual inputs, which largely include interviews with industry participants, reliable statistics, and regional intelligence. The in-house industry experts play an instrumental role in designing analytic tools and models, tailored to the requirements of a particular industry segment. The primary research efforts include reaching out participants through mail, tele-conversations, referrals, professional networks, and face-to-face interactions.

They are also in professional corporate relations with various companies that allow them greater flexibility for reaching out to industry participants and commentators for interviews and discussions.

They also refer to a broad array of industry sources for their secondary research, which typically include; however, not limited to:

  • Company SEC filings, annual reports, company websites, broker & financial reports, and investor presentations for competitive scenario and shape of the industry
  • Scientific and technical writings for product information and related preemptions
  • Regional government and statistical databases for macro analysis
  • Authentic news articles and other related releases for market evaluation
  • Internal and external proprietary databases, key market indicators, and relevant press releases for market estimates and forecast

Furthermore, the accuracy of the data will be analyzed and validated by conducting additional primaries with various industry experts and KOLs. They also provide robust post-sales support to clients.

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