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Autonomous Trains Market Size, Market Share, Application Analysis, Regional Outlook, Growth Trends, Key Players, Competitive Strategies and Forecasts, 2023 To 2031

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    Report

  • 120 Pages
  • January 2023
  • Region: Global
  • Acute Market Reports
  • ID: 5745338

The market for autonomous trains is projected to develop at a CAGR of 5.5% during the forecast period of 2023 and 2031. During the forecast period, Asia-Pacific is expected to lead the market for autonomous trains, followed by Europe. Due to the increase in traffic congestion in urban areas around the globe, there is a pressing need to develop faster, more efficient, and more dependable transportation systems. In the next years, technological advancements and their integration with transportation systems, such as artificial intelligence and machine learning, are predicted to contribute to market expansion. Modern digital technologies such as 5G, big data, the Internet of Things, automation, artificial intelligence, and blockchain are driving a comparable transformation inside the railway business.


Growing Demand for Compliance and Safety in Rail Transit

The safety of commuters plays a crucial role in rail transit due to the large number of commuters that travel. As the number of rail commuters increases around the world, rail operators must prioritize safety to maintain operations without incurring sanctions from regulators. Real-time monitoring and video surveillance in railway stations and on trains can play a vital role in enhancing situational awareness and ensuring a quicker and more proactive incident response time, hence enhancing passenger safety. In addition to station and train safety, the safety of the rails is of the utmost importance. For a smarter and safer transportation network, software companies have been creating communication systems that leverage wireless technologies to communicate data between vehicles and infrastructure such as railway traffic signals, crossroads stop signs, warning gates, etc. Additionally, technologies are being developed to alert the driver if an accident is imminent.


Therefore, systems that may further streamline operational requirements such as signaling, control, electrification, voice communication, video, and bulk data transfer will undoubtedly play a crucial role in boosting rail safety. Through communication between integrated systems and applications, such as real-time traffic alerts, collision avoidance systems, and crash notification systems, these technologies provide significant safety benefits. Multiple features of technology, including data transmission, tracking, mobility, and sensors, are necessary for the successful implementation of railway projects. In recent years, rapid advancements in these fields have enabled improved object communication, culminating in the emergence of smarter ecosystems. IP version 6 (IPv6) made it possible for nearly every physical thing to connect to the internet. As communication technology has improved over the years, so have the advantages of utilizing digital solutions in the railway industry.


Increases in Globalization and Freight Transportation Demands Will Drive Market Growth for Autonomous Trains

Increased globalization and urbanization have increased the demand for freight and cargo transportation. In addition, it has increased the demand for greater mobility solutions. A smaller, more interconnected globe has increased the preference for autonomous rail transportation. Consequently, a shortage of trained drivers is anticipated to occur shortly. It is projected that this will contribute to the market demand for autonomous trains throughout the forecast period. In addition, rising tailpipe emissions and the expanding trend of electrification are projected to stimulate the global development of the autonomous train market.


Global Metro and Monorail Network Expansion to Drive Demand for Autonomous Trains

A growing number of metro lines in cities across the globe have already embraced Level 4 Grade of Automation (GoA) driverless train operation. Higher levels of automation, beginning with driver aid systems and advancing to automatic obstacle detection, assist mainline, regional, and tram operators in enhancing the capacity, flexibility, and energy efficiency of their rail operations. Automatic obstacle detection is a fundamental component of future railway automation for a variety of application scenarios.


Lack Of Technological Infrastructure and Interoperability Is a Constraint.

The underdeveloped telecommunications infrastructure and restricted access to smart devices in developing nations impede the market for autonomous trains. Costly internet access is another obstacle to the development of autonomous trains. As enterprises progressively adopt IoT technologies, pursue ambient computing technology, and provide a variety of IoT solutions, standardization across data standards, wireless protocols, and technologies has become more varied to reduce complexities and costs. This is occurring due to the growing number of newly designed connected devices that operate on a variety of platforms and technologies. Autonomous Trains are difficult to run jointly, posing challenges for interoperability. Networks connect many systems and solutions, such as operations management systems, traffic management systems, control systems, and asset management systems. These solutions are compliant with the same standards and established protocol. Thus, the lack of standards and protocols is anticipated to be a significant market barrier for autonomous trains.


Increasing Emphasis on Intelligent Infrastructure

The increasing urbanization rate drives the development of smart cities. Governments in many regions have initiated smart city projects to improve infrastructure and services and streamline public transportation (including rail and road) for the benefit of end-users. Japan has one of the most extensive high-speed rail networks in the world, with nine high-speed train lines serving 22 of its major cities. The country's high-speed train service is the busiest in the world, carrying more than 420 thousand people on an average weekday. Its trains can reach speeds of up to 320 kilometers per hour (200 miles per hour), and the railway maintains that in over 50 years of operation, no passengers have been killed or injured due to accidents.

The development of high-speed rail in China has accelerated over the previous 15 years. China began planning its present high-speed rail network in the early 1990s, emulating the Shinkansen system of Japan. In 2008, the Chinese high-speed train service began operation, traveling from Beijing to Tianjin at speeds between 250 km/h and 350 km/h (217 mph) (117 km or 73 miles). China's HSR network is anticipated to exceed 38,000 kilometers by 2025, and 45,000 kilometers in the long run.

European nations have constructed significant high-speed rail networks with multiple international cross-border connections. Continuous emphasis is placed on constructing and modernizing train networks to worldwide standards. Existing international connections between Italy and France include Switzerland, Austria, and Slovenia. These connections all involve considerable new tunneling beneath the Alps. The European Union granted funding for the high-speed Turin-Lyon railway in 2015 (for USD 26 billion), which will connect the French and Italian networks and create a link with Slovenia. In a more recent development in Asia, China opened its first privately controlled high-speed railway in the province of Zhejiang in January 2022. This will serve as a positive example for private capital to invest in the nation's railway sector and as evidence of the increasing investment in rail infrastructure.


Challenge: Commuter Data and Privacy Protection

Challenges involved with deploying autonomous trains and attaining full automation include high automation capital costs, a lack of essential infrastructure, and the possibility of cyberattacks. It is anticipated that obtaining the degree of full automation for autonomous trains will be more challenging in nations where many passenger and freight operators must share the same rail tracks, trains have different weights and types, and there are numerous yards and connections. Therefore, the existence of a robust safety infrastructure is crucial for the operation of autonomous trains.


It Is Anticipated That the Metro/Monorail Train Segment Will Lead the Market Over the Forecast Period.

During the forecast period, the metro/monorail train segment is expected to increase at the greatest CAGR in terms of volume, 7.5%. The metro/monorail railway segment is anticipated to be the fastest-growing industry due to escalating passenger and train safety concerns. Due to the train's high speed compared to regular trains, safety requirements are elevated. Autonomous high-speed rail/bullet train industry growth is anticipated to be bolstered by the additional benefit of lower operating expenses. The segment of light rail is anticipated to experience robust expansion throughout the projection period. It is anticipated that demand for this category will increase due to a surge in demand for various urban transit alternatives, such as tram systems.


The GOA 4 segment to lead the Autonomous Train Market by Grade of Automation (GOA)

The GoA4 sector is predicted to increase at a CAGR of 7% throughout the forecast period, holding the biggest market share. Because GoA4-equipped autonomous trains are fully automatic, this market sector is anticipated to expand at the quickest rate. Shift2Rail is among the businesses working to develop automated train operations. Shift2Rail focuses on automated train operations (ATO) in light of the European Rail Traffic Management System (ERTMS), which will expand and modernize the train across Europe. As the GoA4 implementation program nears completion, the GoA4 train testing is expected to begin in 2022.

In practice, there are various grades for train operations; GoA1 is the world's oldest and most common grade. The system features both automatic and manual train protection. Today, GoA1 is implemented on 99 percent of trains. As manufacturers transition to new technologies that are lifting the driving and safety of autonomous trains to unprecedented heights, demand for the GoA1 decreases as autonomous train activity increases. Such characteristics could impede GoA1's expansion shortly.

Another grade used in autonomous trains is GoA2, which is equipped with semi-automated train operations, i.e., a train operator (STO). Since the 1970s, metropolitan regions have utilized GoA2. Since 1991, GoA2 has been utilized in the railway operations of numerous European nations. Multiple testing for the autonomous train equipped with GoA2 in May 2021 has been conducted in several countries, including France.


The Passenger Segment Dominates the Application Market

The Passenger category leads the market and is projected to expand at a CAGR of 6.5% during the forecast period of 2023 to 2031. As passenger trains are the most popular mode of public transportation, there is a significant demand for them around the world. Currently, rail is one of the most energy-efficient modes of transport, transporting 7% of all freight and 8% of all motorized people while consuming only 2% of the energy required for transportation. Globally, tests of driverless passenger trains are being conducted. In October 2021, Deutsche Bahn and Siemens introduced the nation's first autonomous train. The train will travel through Hamburg. It is envisaged that this train will offer dependable service without significantly modifying the existing infrastructure.

Due to the evolution of the global supply chain market, the logistics industry is confronted with greater obstacles, such as the increasing requirement to deliver speedy and flexible services at competitive costs. In a rapidly transforming environment, inland canal and road traffic fight aggressively with freight rail, a scenario that is certain to deteriorate. By the end of 2021, the technology startupProxion plans to test the fully automated freight train. Freight trains are moving toward autonomous operation. The train will be powered by electricity.


The Camera Segment to Lead the Autonomous Train Market by Component

As a result of the necessity to monitor trains for safety purposes, the camera segment is anticipated to account for the biggest share of the autonomous train market by component. Additionally, cameras can be put externally on a train to aid train operators in verifying that doorways are clear, hence preventing accidents. Cameras also aid in monitoring the pantograph, which is essential for the operation of a train that gathers power from an overhead line. It is simple for train operators to ascertain the cause and timing of pantograph failure when they have access to clear footage of the pantograph. This market is anticipated to reach 650 thousand units by 2030, from an estimated 386 thousand units in 2022.


The CBTC Segment Dominates the Market by Technology

The CBTC segment is expected to increase at a CAGR of 6% over the projected period, making it the market leader. Communication-based train control (CBTC) utilizes telecommunications between track equipment and trains to govern infrastructure and manage traffic. CBTC systems offer a more accurate awareness of a train's position than conventional signaling systems. The administration of railroad traffic is made more efficient and secure. Metros and other rail systems are capable of increasing headways while maintaining or improving safety. In modern CBTC systems, trains constantly compute and transmit status updates via radio to roadside equipment along the route. This status takes into account the precise position, speed, direction of travel, and stopping distance, among other criteria. This information allows for the calculation of the potential space the train will occupy on the track.

The European Rail Traffic Management System is a set of standards for the administration and coordination of railroad signals established by European Union (ERTMS). Increasing rail interoperability throughout the EU is ERTMS's key objective. It aims to improve the safety, efficiency, and interoperability of rail transit throughout Europe. The ERTMS system makes interoperable railroads possible in Europe.

Automatic train control (ATC) refers to a speed-control device that responds to external inputs within the framework of railroad safety systems. The track circuits utilized by the digital ATC system recognize the presence of a train in a segment and then send digital data from roadside equipment to the train, the next train ahead, and the platform where the arriving train will stop.


Asia Pacific to Remain as the Global Leader

In the Asia-Pacific area, the construction of metro lines is accelerating. The Asia-Pacific area is the largest and fastest-growing region for the worldwide autonomous train market due to increased infrastructure advancements, rising government spending in the transportation sector, and ongoing/upcoming projects in several nations. Increasing degrees of automation and the requirement for efficient and secure transportation are anticipated to be the primary factors driving the market for autonomous trains. Market leaders have recognized the promise of autonomous trains and have introduced multiple categories of trains with varying levels of automation. Alstom inaugurated its Innovia monorail trains on Wuhu Rail Transit's Line 1 in Anhui Province, China, in November 2021. The new monorail will be elevated and equipped with automatic train operation (ATO) grade of operation 4 (GoA4), allowing it to run in a completely automated condition without a driver or attendant.

Europe represents the second-largest market share and is expected to reach USD 4000 million by 2030, expanding at a CAGR of 6.2%. Europe has one of the largest rail networks in the world. Future railway projects and technologies are fueling the growth of the European market for autonomous trains. In numerous nations, including Germany, train travel is commonplace. The prevalence of railway stations in the country's main cities and villages reflects the popularity of train travel. Train travel is favored above other modes of transportation, such as buses. Germany's federal rule restricts bus peak speeds to 100 km/h (62 mph), although "low-speed" trains can reach 160 km/h (100 mph) (99 mph). These factors raise the demand for railroads in Europe, hence boosting the market for autonomous trains in that region.

In North America, the introduction of autonomous trains is accelerated by technological advances in rail transport. The public transportation business in the United States is immature and expanding. In addition, Canada has an enormous network and well-established railway system that is used for both passenger and freight transportation (the majority of which is freight). Increases in passenger and freight traffic are forecast to increase the demand for driverless trains in the next years, resulting in a substantial increase in the autonomous train market in North America.


Product Development and Partnerships are the Key Strategies Adopted by Key Competitors

The global market for autonomous trains is dominated by Alstom (France), Siemens (Germany), Hitachi (Japan), Wabtec Corporation (United States), and Thales Group (France). These corporations have robust global distribution networks. In addition, these businesses offer a comprehensive selection of products in this sector. To maintain their market position, these corporations have employed measures such as new product development and partnerships. Industry leaders in autonomous trains are adopting new technology and focusing on mergers, acquisitions, and product portfolio expansion. ABB, Alstom, American Equipment Company, Beijing Traffic Control Technology, Belden, Bharat Forge, Bombardier, CAF, Calamp, CRRC, Deuta, Deutsche Bahn, General Electric, Hitachi, Hollysys, Ingeteam, Intesens, Kawasaki Heavy Industries, Mitsubishi Heavy Industries, Siemens, Tech Mahindra Ltd., Thales Group, Transmashholding, Tvema, and Wabtec Corporation are some of the major players.


Key developments in the global autonomous trains industry include the following:

  • Hitachi received a contract for an autonomous metro in Saudi Arabia in January 2022. Hitachi Rail would operate and maintain the whole autonomous metro system's trains and infrastructure. The 22 two-carriage automated metro trains with a capacity of 110 passengers may reach speeds of up to 60 km/h.
  • In August 2021, Siemens AG and Deutsche Bahn began exploring the sensor integration function and how it functions as a driver assistance system to prevent collisions in various weather conditions.

Historical Forecast Period

This study report represents analysis of each segment from 2021 to 2031 considering 2022 as the base year. Compounded Annual Growth Rate (CAGR) for each of the respective segments estimated for the forecast period of 2023 to 2031.

The current report comprises of quantitative market estimations for each micro market for every geographical region and qualitative market analysis such as micro and macro environment analysis, market trends, competitive intelligence, segment analysis, porters five force model, top winning strategies, top investment markets, emerging trends and technological analysis, case studies, strategic conclusions and recommendations and other key market insights.


Research Methodology

The complete research study was conducted in three phases, namely: secondary research, primary research, and expert panel review. key data point that enables the estimation of Autonomous Trains market are as follows:


  • Research and development budgets of manufacturers and government spending
  • Revenues of key companies in the market segment
  • Number of end users and consumption volume, price and value.
  • Geographical revenues generate by countries considered in the report
  • Micro and macro environment factors that are currently influencing the Autonomous Trains market and their expected impact during the forecast period.

Market forecast was performed through proprietary software that analyzes various qualitative and quantitative factors. Growth rate and CAGR were estimated through intensive secondary and primary research. Data triangulation across various data points provides accuracy across various analyzed market segments in the report. Application of both top down and bottom-up approach for validation of market estimation assures logical, methodical and mathematical consistency of the quantitative data.


Market Segmentation

Level of Automation

  • GOA 1
  • GOA 2
  • GOA 3
  • GOA 4

Train Type

  • Metro/Monorail
  • Light Rail
  • High-speed Rail/Bullet Train

Technology

  • CBTC
  • ERTMS
  • PTC
  • ATC

Application

  • Passenger
  • Freight

Component

  • Tachometer
  • Doppler
  • Accelerometer
  • Camera
  • Antenna
  • Radio Set
  • Odometer
  • RADAR
  • LiDAR

Key questions answered in this report

  • What are the key micro and macro environmental factors that are impacting the growth of Autonomous Trains market?
  • What are the key investment pockets concerning product segments and geographies currently and during the forecast period?
  • Estimated forecast and market projections up to 2031.
  • Which segment accounts for the fastest CAGR during the forecast period?
  • Which market segment holds a larger market share and why?
  • Are low and middle-income economies investing in the Autonomous Trains market?
  • Which is the largest regional market for Autonomous Trains market?
  • What are the market trends and dynamics in emerging markets such as Asia Pacific, Latin America, and Middle East Africa?
  • Which are the key trends driving Autonomous Trains market growth?
  • Who are the key competitors and what are their key strategies to enhance their market presence in the Autonomous Trains market worldwide?


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Table of Contents

1. Preface
1.1. Report Description
1.1.1. Purpose of the Report
1.1.2. Target Audience
1.1.3. Key Offerings
1.2. Market Segmentation
1.3. Research Methodology
1.3.1. Phase I - Secondary Research
1.3.2. Phase II - Primary Research
1.3.3. Phase III - Expert Panel Review
1.3.4. Assumptions
1.3.5. Approach Adopted

2. Executive Summary
2.1. Market Snapshot: Global Autonomous Trains Market
2.2. Global Autonomous Trains Market, By Level of Automation, 2022 (US$ Million)
2.3. Global Autonomous Trains Market, By Train Type, 2022 (US$ Million)
2.4. Global Autonomous Trains Market, By Technology, 2022 (US$ Million)
2.5. Global Autonomous Trains Market, By Application, 2022 (US$ Million)
2.6. Global Autonomous Trains Market, By Component, 2022 (US$ Million)
2.7. Global Autonomous Trains Market, By Geography, 2022 (US$ Million)
2.8. Attractive Investment Proposition by Geography, 2022

3. Autonomous Trains Market: Competitive Analysis
3.1. Market Positioning of Key Autonomous Trains Market Vendors
3.2. Strategies Adopted by Autonomous Trains Market Vendors
3.3. Key Industry Strategies
3.4. Tier Analysis 2022 Versus 2031

4. Autonomous Trains Market: Macro Analysis & Market Dynamics
4.1. Introduction
4.2. Global Autonomous Trains Market Value, 2021 - 2031, (US$ Million)
4.3. Market Dynamics
4.3.1. Market Drivers
4.3.2. Market Restraints
4.3.3. Key Challenges
4.3.4. Key Opportunities
4.4. Impact Analysis of Drivers and Restraints
4.5. See-Saw Analysis

5. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
5.1. Market Overview
5.2. Growth & Revenue Analysis: 2022 Versus 2031
5.3. Market Segmentation
5.3.1. GOA 1
5.3.2. GOA 2
5.3.3. GOA 3
5.3.4. GOA 4

6. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
6.1. Market Overview
6.2. Growth & Revenue Analysis: 2022 Versus 2031
6.3. Market Segmentation
6.3.1. Metro/Monorail
6.3.2. Light Rail
6.3.3. High-speed Rail/Bullet Train

7. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
7.1. Market Overview
7.2. Growth & Revenue Analysis: 2022 Versus 2031
7.3. Market Segmentation
7.3.1. CBTC
7.3.2. ERTMS
7.3.3. PTC
7.3.4. ATC

8. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
8.1. Market Overview
8.2. Growth & Revenue Analysis: 2022 Versus 2031
8.3. Market Segmentation
8.3.1. Passenger
8.3.2. Freight

9. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
9.1. Market Overview
9.2. Growth & Revenue Analysis: 2022 Versus 2031
9.3. Market Segmentation
9.3.1. Tachometer
9.3.2. Doppler
9.3.3. Accelerometer
9.3.4. Camera
9.3.5. Antenna
9.3.6. Radio Set
9.3.7. Odometer
9.3.8. RADAR
9.3.9. LiDAR

10. North America Autonomous Trains Market, 2021-2031, USD (Million)
10.1. Market Overview
10.2. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
10.3. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
10.4. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
10.5. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
10.6. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
10.7.Autonomous Trains Market: By Region, 2021-2031, USD (Million)
10.7.1.North America
10.7.1.1. U.S.
10.7.1.1.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
10.7.1.1.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
10.7.1.1.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
10.7.1.1.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
10.7.1.1.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
10.7.1.2. Canada
10.7.1.2.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
10.7.1.2.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
10.7.1.2.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
10.7.1.2.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
10.7.1.2.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
10.7.1.3. Rest of North America
10.7.1.3.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
10.7.1.3.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
10.7.1.3.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
10.7.1.3.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
10.7.1.3.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)

11. UK and European Union Autonomous Trains Market, 2021-2031, USD (Million)
11.1. Market Overview
11.2. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
11.3. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
11.4. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
11.5. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
11.6. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
11.7.Autonomous Trains Market: By Region, 2021-2031, USD (Million)
11.7.1.UK and European Union
11.7.1.1. UK
11.7.1.1.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
11.7.1.1.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
11.7.1.1.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
11.7.1.1.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
11.7.1.1.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
11.7.1.2. Germany
11.7.1.2.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
11.7.1.2.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
11.7.1.2.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
11.7.1.2.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
11.7.1.2.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
11.7.1.3. Spain
11.7.1.3.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
11.7.1.3.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
11.7.1.3.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
11.7.1.3.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
11.7.1.3.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
11.7.1.4. Italy
11.7.1.4.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
11.7.1.4.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
11.7.1.4.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
11.7.1.4.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
11.7.1.4.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
11.7.1.5. France
11.7.1.5.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
11.7.1.5.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
11.7.1.5.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
11.7.1.5.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
11.7.1.5.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
11.7.1.6. Rest of Europe
11.7.1.6.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
11.7.1.6.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
11.7.1.6.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
11.7.1.6.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
11.7.1.6.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)

12. Asia Pacific Autonomous Trains Market, 2021-2031, USD (Million)
12.1. Market Overview
12.2. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
12.3. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
12.4. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
12.5. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
12.6. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
12.7.Autonomous Trains Market: By Region, 2021-2031, USD (Million)
12.7.1.Asia Pacific
12.7.1.1. China
12.7.1.1.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
12.7.1.1.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
12.7.1.1.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
12.7.1.1.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
12.7.1.1.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
12.7.1.2. Japan
12.7.1.2.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
12.7.1.2.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
12.7.1.2.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
12.7.1.2.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
12.7.1.2.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
12.7.1.3. India
12.7.1.3.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
12.7.1.3.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
12.7.1.3.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
12.7.1.3.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
12.7.1.3.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
12.7.1.4. Australia
12.7.1.4.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
12.7.1.4.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
12.7.1.4.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
12.7.1.4.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
12.7.1.4.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
12.7.1.5. South Korea
12.7.1.5.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
12.7.1.5.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
12.7.1.5.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
12.7.1.5.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
12.7.1.5.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
12.7.1.6. Rest of Asia Pacific
12.7.1.6.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
12.7.1.6.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
12.7.1.6.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
12.7.1.6.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
12.7.1.6.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)

13. Latin America Autonomous Trains Market, 2021-2031, USD (Million)
13.1. Market Overview
13.2. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
13.3. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
13.4. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
13.5. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
13.6. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
13.7.Autonomous Trains Market: By Region, 2021-2031, USD (Million)
13.7.1.Latin America
13.7.1.1. Brazil
13.7.1.1.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
13.7.1.1.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
13.7.1.1.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
13.7.1.1.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
13.7.1.1.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
13.7.1.2. Mexico
13.7.1.2.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
13.7.1.2.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
13.7.1.2.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
13.7.1.2.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
13.7.1.2.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
13.7.1.3. Rest of Latin America
13.7.1.3.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
13.7.1.3.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
13.7.1.3.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
13.7.1.3.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
13.7.1.3.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)

14. Middle East and Africa Autonomous Trains Market, 2021-2031, USD (Million)
14.1. Market Overview
14.2. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
14.3. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
14.4. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
14.5. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
14.6. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
14.7.Autonomous Trains Market: By Region, 2021-2031, USD (Million)
14.7.1.Middle East and Africa
14.7.1.1. GCC
14.7.1.1.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
14.7.1.1.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
14.7.1.1.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
14.7.1.1.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
14.7.1.1.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
14.7.1.2. Africa
14.7.1.2.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
14.7.1.2.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
14.7.1.2.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
14.7.1.2.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
14.7.1.2.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)
14.7.1.3. Rest of Middle East and Africa
14.7.1.3.1. Autonomous Trains Market: By Level of Automation, 2021-2031, USD (Million)
14.7.1.3.1. Autonomous Trains Market: By Train Type, 2021-2031, USD (Million)
14.7.1.3.1. Autonomous Trains Market: By Technology, 2021-2031, USD (Million)
14.7.1.3.1. Autonomous Trains Market: By Application, 2021-2031, USD (Million)
14.7.1.3.1. Autonomous Trains Market: By Component, 2021-2031, USD (Million)

15. Company Profile
15.1. ABB
15.1.1. Company Overview
15.1.2. Financial Performance
15.1.3. Product Portfolio
15.1.4. Strategic Initiatives
15.2. Alstom
15.2.1. Company Overview
15.2.2. Financial Performance
15.2.3. Product Portfolio
15.2.4. Strategic Initiatives
15.3. American Equipment Company
15.3.1. Company Overview
15.3.2. Financial Performance
15.3.3. Product Portfolio
15.3.4. Strategic Initiatives
15.4. Beijing Traffic Control Technology
15.4.1. Company Overview
15.4.2. Financial Performance
15.4.3. Product Portfolio
15.4.4. Strategic Initiatives
15.5. Belden
15.5.1. Company Overview
15.5.2. Financial Performance
15.5.3. Product Portfolio
15.5.4. Strategic Initiatives
15.6. Bharat Forge
15.6.1. Company Overview
15.6.2. Financial Performance
15.6.3. Product Portfolio
15.6.4. Strategic Initiatives
15.7. Bombardier
15.7.1. Company Overview
15.7.2. Financial Performance
15.7.3. Product Portfolio
15.7.4. Strategic Initiatives
15.8. CAF
15.8.1. Company Overview
15.8.2. Financial Performance
15.8.3. Product Portfolio
15.8.4. Strategic Initiatives
15.9. Calamp
15.9.1. Company Overview
15.9.2. Financial Performance
15.9.3. Product Portfolio
15.9.4. Strategic Initiatives
15.10. CRRC
15.10.1. Company Overview
15.10.2. Financial Performance
15.10.3. Product Portfolio
15.10.4. Strategic Initiatives
15.11. Deuta
15.11.1. Company Overview
15.11.2. Financial Performance
15.11.3. Product Portfolio
15.11.4. Strategic Initiatives
15.12. Deutsche Bahn
15.12.1. Company Overview
15.12.2. Financial Performance
15.12.3. Product Portfolio
15.12.4. Strategic Initiatives
15.13. General Electric
15.13.1. Company Overview
15.13.2. Financial Performance
15.13.3. Product Portfolio
15.13.4. Strategic Initiatives
15.14. Hitachi
15.14.1. Company Overview
15.14.2. Financial Performance
15.14.3. Product Portfolio
15.14.4. Strategic Initiatives
15.15. Hollysys
15.15.1. Company Overview
15.15.2. Financial Performance
15.15.3. Product Portfolio
15.15.4. Strategic Initiatives
15.16. Ingeteam
15.16.1. Company Overview
15.16.2. Financial Performance
15.16.3. Product Portfolio
15.16.4. Strategic Initiatives
15.17. Intesens
15.17.1. Company Overview
15.17.2. Financial Performance
15.17.3. Product Portfolio
15.17.4. Strategic Initiatives
15.18. Kawasaki Heavy Industries
15.18.1. Company Overview
15.18.2. Financial Performance
15.18.3. Product Portfolio
15.18.4. Strategic Initiatives
15.19. Mitsubishi Heavy Industries
15.19.1. Company Overview
15.19.2. Financial Performance
15.19.3. Product Portfolio
15.19.4. Strategic Initiatives
15.20. Siemens
15.20.1. Company Overview
15.20.2. Financial Performance
15.20.3. Product Portfolio
15.20.4. Strategic Initiatives
15.21. Tech Mahindra Ltd.
15.21.1. Company Overview
15.21.2. Financial Performance
15.21.3. Product Portfolio
15.21.4. Strategic Initiatives
15.22. Thales Group
15.22.1. Company Overview
15.22.2. Financial Performance
15.22.3. Product Portfolio
15.22.4. Strategic Initiatives
15.23. Transmashholding
15.23.1. Company Overview
15.23.2. Financial Performance
15.23.3. Product Portfolio
15.23.4. Strategic Initiatives
15.24. Tvema
15.24.1. Company Overview
15.24.2. Financial Performance
15.24.3. Product Portfolio
15.24.4. Strategic Initiatives
15.25. Wabtec Corporation
15.25.1. Company Overview
15.25.2. Financial Performance
15.25.3. Product Portfolio
15.25.4. Strategic Initiatives
15.26. Others
15.26.1. Company Overview
15.26.2. Financial Performance
15.26.3. Product Portfolio
15.26.4. Strategic Initiatives

List of Figures
Figure 1 Global Autonomous Trains Market: Market Coverage
Figure 2 Research Methodology and Data Sources
Figure 3 Market Size Estimation - Top Down & Bottom-Up Approach
Figure 4 Global Autonomous Trains Market: Quality Assurance
Figure 5 Global Autonomous Trains Market, By Level of Automation, 2022
Figure 6 Global Autonomous Trains Market, By Train Type, 2022
Figure 7 Global Autonomous Trains Market, By Technology, 2022
Figure 8 Global Autonomous Trains Market, By Application, 2022
Figure 9 Global Autonomous Trains Market, By Component, 2022
Figure 10 Global Autonomous Trains Market, By Geography, 2022
Figure 11 Market Geographical Opportunity Matrix - Global Autonomous Trains Market, 2022
Figure 12 Market Positioning of Key Autonomous Trains Market Players, 2022
Figure 13 Global Autonomous Trains Market - Tier Analysis - Percentage of Revenues by Tier Level, 2022 Versus 2031
Figure 14 Global Autonomous Trains Market, By Level of Automation, 2022 Vs 2031, %
Figure 15 Global Autonomous Trains Market, By Train Type, 2022 Vs 2031, %
Figure 16 Global Autonomous Trains Market, By Technology, 2022 Vs 2031, %
Figure 17 Global Autonomous Trains Market, By Application, 2022 Vs 2031, %
Figure 18 Global Autonomous Trains Market, By Component, 2022 Vs 2031, %
Figure 19 U.S. Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 20 Canada Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 21 Rest of North America Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 22 UK Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 23 Germany Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 24 Spain Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 25 Italy Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 26 France Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 27 Rest of Europe Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 28 China Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 29 Japan Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 30 India Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 31 Australia Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 32 South Korea Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 33 Rest of Asia Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 34 Brazil Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 35 Mexico Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 36 Rest of Latin America Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 37 GCC Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 38 Africa Autonomous Trains Market (US$ Million), 2021 - 2031
Figure 39 Rest of Middle East and Africa Autonomous Trains Market (US$ Million), 2021 - 2031

List of Tables
Table 1 Global Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 2 Global Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 3 Global Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 4 Global Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 5 Global Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 6 North America Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 7 North America Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 8 North America Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 9 North America Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 10 North America Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 11 U.S. Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 12 U.S. Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 13 U.S. Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 14 U.S. Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 15 U.S. Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 16 Canada Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 17 Canada Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 18 Canada Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 19 Canada Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 20 Canada Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 21 Rest of North America Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 22 Rest of North America Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 23 Rest of North America Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 24 Rest of North America Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 25 Rest of North America Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 26 UK and European Union Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 27 UK and European Union Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 28 UK and European Union Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 29 UK and European Union Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 30 UK and European Union Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 31 UK Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 32 UK Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 33 UK Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 34 UK Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 35 UK Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 36 Germany Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 37 Germany Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 38 Germany Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 39 Germany Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 40 Germany Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 41 Spain Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 42 Spain Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 43 Spain Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 44 Spain Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 45 Spain Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 46 Italy Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 47 Italy Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 48 Italy Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 49 Italy Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 50 Italy Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 51 France Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 52 France Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 53 France Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 54 France Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 55 France Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 56 Rest of Europe Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 57 Rest of Europe Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 58 Rest of Europe Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 59 Rest of Europe Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 60 Rest of Europe Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 61 Asia Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 62 Asia Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 63 Asia Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 64 Asia Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 65 Asia Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 66 China Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 67 China Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 68 China Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 69 China Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 70 China Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 71 Japan Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 72 Japan Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 73 Japan Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 74 Japan Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 75 Japan Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 76 India Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 77 India Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 78 India Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 79 India Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 80 India Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 81 Australia Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 82 Australia Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 83 Australia Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 84 Australia Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 85 Australia Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 86 South Korea Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 87 South Korea Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 88 South Korea Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 89 South Korea Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 90 South Korea Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 91 Latin America Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 92 Latin America Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 93 Latin America Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 94 Latin America Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 95 Latin America Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 96 Brazil Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 97 Brazil Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 98 Brazil Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 99 Brazil Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 100 Brazil Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 101 Mexico Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 102 Mexico Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 103 Mexico Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 104 Mexico Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 105 Mexico Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 106 Rest of Latin America Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 107 Rest of Latin America Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 108 Rest of Latin America Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 109 Rest of Latin America Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 110 Rest of Latin America Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 111 Middle East and Africa Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 112 Middle East and Africa Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 113 Middle East and Africa Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 114 Middle East and Africa Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 115 Middle East and Africa Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 116 GCC Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 117 GCC Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 118 GCC Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 119 GCC Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 120 GCC Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 121 Africa Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 122 Africa Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 123 Africa Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 124 Africa Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 125 Africa Autonomous Trains Market By Component, 2021-2031, USD (Million)
Table 126 Rest of Middle East and Africa Autonomous Trains Market By Level of Automation, 2021-2031, USD (Million)
Table 127 Rest of Middle East and Africa Autonomous Trains Market By Train Type, 2021-2031, USD (Million)
Table 128 Rest of Middle East and Africa Autonomous Trains Market By Technology, 2021-2031, USD (Million)
Table 129 Rest of Middle East and Africa Autonomous Trains Market By Application, 2021-2031, USD (Million)
Table 130 Rest of Middle East and Africa Autonomous Trains Market By Component, 2021-2031, USD (Million)


Companies Mentioned

  • ABB
  • Alstom
  • American Equipment Company
  • Beijing Traffic Control Technology
  • Belden
  • Bharat Forge
  • Bombardier
  • CAF
  • Calamp
  • CRRC
  • Deuta
  • Deutsche Bahn
  • General Electric
  • Hitachi
  • Hollysys
  • Ingeteam
  • Intesens
  • Kawasaki Heavy Industries
  • Mitsubishi Heavy Industries
  • Siemens
  • Tech Mahindra Ltd.
  • Thales Group
  • Transmashholding
  • Tvema
  • Wabtec Corporation