Robot Operating System Market to Hit USD 1,576.58 Million by 2030 due to Expanding Robotics Applications and Cross-Platform Compatibility | By SNS Research

According to SNS Insider’s research, the robot operating system market is on an upward trajectory, driven by factors such as its versatility, interoperability, research investments, autonomous systems, AI integration, collaborative robotics, and a thriving startup ecosystem.


Pune, Nov. 06, 2023 (GLOBE NEWSWIRE) -- The Robot Operating System Market was assessed at USD 580.6 million in 2022, with a projected increase to USD 1,576.58 million by 2030, showing a compound annual growth rate (CAGR) of 13.3% throughout the forecast period from 2023 to 2030, as stated in the SNS Insider report.

Market Overview

Robot operating system (ROS) serves as a middleware framework that sits on top of a host operating system, providing essential services and tools for robotics developers. It simplifies the process of creating, programming, and controlling robots, allowing developers to focus on the robot's specific tasks rather than reinventing the wheel. Robotics has transcended industrial manufacturing and ventured into healthcare, agriculture, logistics, and more. As the use cases for robots continue to expand, the demand for ROS as a versatile robotics development platform grows.

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Market Analysis

The widespread application of robotics in diverse sectors, such as manufacturing, healthcare, agriculture, and logistics, has created a substantial demand for adaptable operating systems. ROS has established itself as a preferred choice for developers due to its open-source nature and robust community support, enabling the rapid development of applications across industries. ROS's focus on interoperability and standardization is a significant driver for its growth. This operating system offers a consistent framework for various robots and robotic components, making it easier for developers to create and integrate new functionalities. This compatibility enhances the overall efficiency and usability of robots, fostering robot operating system market growth. The rise of autonomous systems, such as autonomous vehicles, drones, and industrial robots, has further propelled the demand for ROS. These systems rely on sophisticated software for navigation, perception, and decision-making, and ROS provides a comprehensive framework to develop and maintain these systems.

Robot Operating System Market Overview & Scope:

Report AttributesDetails
Market Size in 2022USD 580.6 million
Market Size by 2030USD 1576.58 million
CAGRCAGR of 13.3% over 2023-2030
Key SegmentsBy Robot Type (Articulated Robots, SCARA Robots, Parallel Robots, Cartesian Robots, Collaborative Robots, Autonomous Mobile Robots)

By Application (Pick and Place, Plastic Injection and Blow Molding, Printed Circuit Board Handling and Information Communication and Technology, Testing & Quality Inspection, Metal Stamping and Press Trending, Computer Numerical Control Machine Tending, Co-Packaging and End of Line Packaging, Mapping and Navigation, Inventory Management, Home Automation & Security, Personal Assistance)

By End-User Industry (Automotive, Electrical & Electronics, Metal & Machinery, Plastic, Rubber, and Chemicals, Food and Beverages, Healthcare, Warehousing & Logistics, Domestic & Personal Robotics, Others))
Key Market PlayersABB Ltd., FANUC, KUKA AG, Yaskawa Electric Corporation, Denso, Microsoft, Omron Corporation, Universal Robotics, Clearpath Robots, and iRobot Corporation and other players
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Key Takeaway from Robot Operating System Market Study

  • Articulated robots, also known as industrial robots, are witnessing increased adoption across various industries. These robots are highly versatile and find applications in manufacturing, logistics, and healthcare, among others. Their ability to perform complex tasks with precision and efficiency is a major driver of their popularity.
  • The automotive segment is another significant driver of the robot operating system market. The automotive industry is undergoing a transformation with the introduction of autonomous vehicles and the increasing emphasis on electric mobility. Robots are essential in the manufacturing processes of electric vehicles, and they play a crucial role in assembling battery packs, motors, and other components.

Recent Developments

  • Continental, a leading automotive technology company, has recently acquired Kinexon's robot operating systems division. With this acquisition, Continental aims to enhance its capabilities in robotics, particularly in the context of autonomous vehicles and smart manufacturing.
  • Alphabet's subsidiary, Intrinsic, has made a significant move by acquiring a DARPA-backed firm known for its open source robotics software. Intrinsic's acquisition is expected to further accelerate the development of innovative robotics solutions, potentially impacting various industries, including logistics, healthcare, and more.

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Market Dynamics Analysis

On the driver's side, the increasing adoption of robotics across various industries, such as manufacturing, healthcare, agriculture, and logistics, is a significant force propelling the robot operating system market forward. The open-source nature of ROS, coupled with its flexibility and versatility, makes it an attractive choice for developers and businesses seeking to create and deploy robotic applications efficiently. However, this market is not without its restraints and challenges. One key restraint is the complexity of implementing ROS in real-world applications, which demands skilled developers and engineers. The compatibility issues with various hardware and software components can pose challenges in achieving seamless integration, and addressing these concerns remains a priority. Furthermore, market threats include the emergence of competing robotic operating systems and proprietary alternatives. These alternatives can erode ROS's market share if they offer more streamlined solutions or cater to specific niches with superior performance.

Key Regional Developments

The North American robot operating system market is one of the most prominent regions globally. It is driven by the rapid development and deployment of robots in various sectors, including manufacturing, healthcare, and logistics. Major players in this region are contributing to the market's growth through their innovative robotic solutions. The Asia-Pacific region is emerging as a significant player in the ROS market, primarily due to the expanding manufacturing sector and the rapid adoption of automation in industries. Countries like China, Japan, and South Korea are investing heavily in robotics and AI, fostering innovation and contributing to market growth.

Impact of Recession

Startups and companies specializing in ROS development may face funding challenges during a recession. Investors may be more cautious, leading to reduced capital infusion in the robotics sector. On the flip side, recessions can also drive companies to seek greater efficiency and cost savings. ROS solutions that enhance productivity and reduce labor costs may become more attractive in such times. Government stimulus packages and economic recovery programs can have a significant impact on the ROS market. If governments prioritize investments in technology and automation as part of their economic recovery strategies, it could lead to a boost in the robot operating system market.

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Table of Content

1. Introduction

1.1 Market Definition

1.2 Scope

1.3 Research Assumptions

2. Research Methodology

3. Market Dynamics

3.1 Drivers

3.2 Restraints

3.3 Opportunities

3.4 Challenges

4. Impact Analysis

4.1 Impact of Russia-Ukraine war

4.2 Impact of Ongoing Recession

4.2.1 Introduction

4.2.2 Impact on major economies

4.2.2.1 US

4.2.2.2 Canada

4.2.2.3 Germany

4.2.2.4 France

4.2.2.5 United Kingdom

4.2.2.6 China

4.2.2.7 Japan

4.2.2.8 South Korea

4.2.2.9 Rest of the World

5. Value Chain Analysis

6. Porter’s 5 forces model

7. PEST Analysis

8. Robot Operating System Market Segmentation, By Robot Type

8.1    Articulated Robots

8.2    SCARA Robots

8.3    Parallel Robots

8.4    Cartesian Robots

8.5    Collaborative Robots

8.6    Autonomous Mobile Robots

9. Robot Operating System Market Segmentation, By Application

9.1    Pick and Place

9.2    Plastic Injection and Blow Molding

9.3    Printed Circuit Board Handling and Information Communication and Technology

9.4    Testing & Quality Inspection

9.5    Metal Stamping and Press Trending

9.6    Computer Numerical Control Machine Tending

9.7    Co-Packaging and End of Line Packaging

9.8    Mapping and Navigation

9.9    Inventory Management

9.10 Home Automation & Security

9.11 Personal Assistance

10. Robot Operating System Market Segmentation, By End-User Industry

10.1 Automotive

10.2 Electrical & Electronics

10.3 Metal & Machinery

10.4 Plastic, Rubber, and Chemicals

10.5 Food and Beverages

10.6 Healthcare

10.7 Warehousing & Logistics

10.8 Domestic & Personal Robotics

10.9 Others

11. Regional Analysis

11.1 Introduction

11.2 North America

11.2.5 USA

11.2.6 Canada

11.2.7 Mexico

11.3 Europe

11.3.1 Eastern Europe

11.3.1.5 Poland

11.3.1.6 Romania

11.3.1.7 Turkey

11.3.1.8 Rest of Eastern Europe

11.3.2 Western Europe

11.3.2.4 Germany

11.3.2.5 France

11.3.2.6 UK

11.3.2.7 Italy

11.3.2.8 Spain

11.3.2.9 Netherlands

11.3.2.10 Switzerland

11.3.2.11.1 Austria

11.3.2.12 Rest of Western Europe

11.4 Asia-Pacific

11.4.5 China

11.4.6 India

11.4.7 Japan

11.4.8 South Korea

11.4.9 Vietnam

11.4.10 Singapore

11.4.11 Australia

11.4.12 Rest of Asia-Pacific

11.5 Middle East & Africa

11.5.1 Middle East

11.5.1.5 UAE

11.5.1.6 Egypt

11.5.1.7 Saudi Arabia

11.5.1.8 Qatar

11.5.1.9 Rest of Middle East

11.5.2 Africa

11.5.2.5 Nigeria

11.5.2.6 South Africa

11.5.2.7 Rest of Africa

11.6 Latin America

11.6.5 Brazil

11.6.6 Argentina

11.6.7 Colombia

11.6.8 Rest of Latin America

12.Company Profile

12.1 ABB Ltd. (Switzerland)

12.1.1 Company Overview

12.1.2 Financial

12.1.3 Products/ Services Offered

12.1.4 SWOT Analysis

12.1.5 The SNS View

12.2 FANUC (Japan)

12.3 KUKA AG (Germany)

12.4 Yaskawa Electric Corporation (Japan)

12.5 Denso (Japan)

12.6 Microsoft (US)

12.7 Omron Corporation (Japan)

12.8 Universal Robotics (Denmark)

12.9 Clearpath Robots (Canada)

12.10 and iRobot Corporation (US)

13. Competitive Landscape

13.1 Competitive Bench marking

13.2 Market Share Analysis

13.3 Recent Developments

13.3.1 Industry News

13.3.2 Company News

13.3.3 Mergers & Acquisitions

14. Use Case and Best Practices

15. Conclusion

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