市场调查报告书
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1219678
机器人操作系统全球市场规模,份额,行业趋势分析报告,按应用,类型(Scala/并联/协作/关节机器人,其他),行业,地区展望和预测2022-2028Global Robot Operating System Market Size, Share & Industry Trends Analysis Report By Application, By Type (Scara Robots, Parallel Robots, Collaborative Robots, Articulated Robots and Others), By Vertical, By Regional Outlook and Forecast, 2022 - 2028 |
到 2028 年,机器人操作系统的全球市场规模预计将达到 9,542 亿美元,在预测期内以 11,6% 的复合年增长率增长。
由于全球范围内越来越多地使用工业自动化,因此对 ROS 的需求量很大。 此外,协作模块化机器人的使用增加和工业自动化研发资金的增加预计将成为推动机器人操作系统市场在预测期内增长的关键因素。
一些机器人领域的领先品牌已经采用了 ROS。 但是大多数公司要么使用每个人都可以安装的 ROS,要么使用某种形式的 ROS 分支。 此外,用例仍在扩大。 许多领域都采用了 ROS,不仅是真空吸尘器和医疗设备,还有农业和软件定义的动态用例。 这些只是目前公开使用 ROS 的一些企业,而且随着时间的推移,这个名单将会增加并变得更加多样化。
COVID-19 影响分析
长期以来,只有一些人被允许经营工厂。 然而,近年来机器人操作系统市场迅速扩张。 这是因为大多数政府都关闭了工作场所、学校和大学以遏制病毒的传播。 在工业领域,广泛采用机器人操作系统来消除订单积压。 在製造业中,机器人操作系统可以准确、快速地响应客户的要求。 因此,自 COVID-19 以来,全球最终用户对机器人操作系统的需求显着增加,预计这种需求将在整个预测期内推动市场。
市场增长因素
汽车在各产业领域的应用扩大
製造商正在采用新的数字技术来提高工人的安全性、可靠性和产品质量,缩短交货时间并降低运营成本。 工业自动化和 ROS 的使用可能会带来一些好处。 在製造环境中,ROS 自动化似乎是一项难以实施的策略。 但它比以往任何时候都更有可能,并且可能成为赋予公司竞争优势的有力一击。 1990 年代生产的机器人数量大幅增加,导致此类设备的价格下降。 与增加的劳动力成本相比,引入 ROS 机器人的经济效益尤为显着。 这支持了本地市场的增长。
采用ROS的製造商
Open Robotics 为 ROS 2,0 铺平了道路,但 ROS 和 ROS-Industrial 仍然是创建各种新技术机器人应用程序、产品和服务的绝佳选择。 现代 ROS 框架使用工业物联网 (IIoT)、云和人工智能提高了工业环境的数字化程度。 ROS 2,0旨在支持多机器人系统、实时控制、增强安全性,并且是跨平台的,为更复杂的工业应用打开了大门。 因此,我们相信未来几年机器人操作市场潜力巨大。
市场製约因素
关于机器人系统的安全问题
工业机器人存在一些安全问题。 一些机器人,尤其是那些在典型工业环境中使用的机器人,速度快且敏捷。 因此,即使是机器人手臂的一次摆动,也可能对身体造成致命伤害,增加危险的风险。 如果机器人发生故障或需要维修,则可能会更加危险。 机器人通常不可靠,发生故障的机器人会伤害工人。 如果汽车装配线上的机械臂电机卡住,则在清除卡纸时,修理卡纸的工人可能会被机械臂打一拳。 这支持了该地区市场的增长。
按类型划分的前景
按类型划分,机器人操作系统市场分为 SCARA 机器人、并联机器人、多关节机器人、协作机器人等。 到 2021 年,关节式机器人细分市场将在市场中占据显着的收入份额。 多关节机器人非常适合装配应用,原因有几个。 由于它的关节,它可以以其他机器人无法做到的方式移动。 此外,其他机器人无法举起的物体可以通过有效载荷运输。 即使是简单的装配工作也能以这种精度完成。 因此,多关节机器人多用于装配工作。
应用展望
机器人操作系统市场按应用细分为联合包装和生产线末端包装、塑料注射和吹塑成型、拾取和放置、测试和定性检查、PCB 处理和 ICT、金属冲压和冲压等, , 2021 年,拾取和放置部分在机器人操作系统市场中占据了显着的收入份额。 拾放机器人注重一致性和速度。 机器人易于编程,因此可用于各种应用,并可根据特定製造需求进行定制。 取放机器人有多种形状,但许多都重量轻且结构紧凑,是狭小空间的理想选择。
行业展望
机器人操作系统市场按行业划分为食品和饮料、汽车、金属和机械、电气和电子、医疗保健、橡胶和塑料等。 金属和机械部门在 2021 年提高了可观的收入份额。 金属和设备行业主要依靠自动化和机器人来降低成本、增加产量并保护工人免受不必要的危害。 金属产品製造商一直在寻找创新方法来优化业务流程,并在当今竞争激烈的金属、工业和结构市场中有效地分配人力。
区域展望
按地区划分,机器人操作系统市场分为北美、欧洲、亚太地区和 LAMEA。 2021 年,亚太地区将在机器人操作系统市场占据最高的收入份额。 这是因为製造业的扩张将增加对工业安全的需求,这有望成为该地区市场发展的推动力。 外围国家的增长扩张预计将为亚太地区的 ROS 供应商带来一些新的机会。 在中国和日本等国家,由于老年人口的增加,对机器人的需求也在增加。 此外,机器人在医疗和教育等各个领域的使用不断增加,是亚太地区 ROS 市场扩张的另一个因素。
The Global Robot Operating System Market size is expected to reach $954.2 Million by 2028, rising at a market growth of 11.6% CAGR during the forecast period.
The ROS acronym stands for Robot Operating System, a group of free and open-source robotics middleware. ROS is a set of software frameworks for developing robot software; it is not an operating system (OS). As a result, it provides services for a heterogeneous computer cluster, including hardware abstraction, low-level device control, the implementation of commonly used functionality, message-passing between processes, and package management.
To put it another way, ROS is a collection of programming tools and scripts that help projectors execute the computer code required to carry out the action and the supporting infrastructure, including messages passing between processes. The ROS is designed to work with various components and systems that use different programming languages.
As a result of the growing usage of industrial automation in business operations throughout the world, ROS is in great demand. Additionally, the growing usage of collaborative modular robots and the increase in industrial automation research and development funding are essential factors projected to drive the robot operating system market growth throughout the forecast period.
Some of the leading brands in robotics have embraced ROS. However, most businesses either use ROS, which everyone can install, or a ROS fork in some way. The use cases are also still expanding. In addition to vacuum cleaners and medical equipment, ROS is employed in many other sectors, including agriculture and software-defined dynamic use cases. These are only a few businesses that publicly use ROS today; as time goes on, the list expands and becomes more diverse.
COVID-19 Impact Analysis
Over time, only a few people were permitted to operate in factories. However, the market for robot operating systems has shown rapid expansion in recent years. This is attributable to the majority of governments implementing lockdowns and closing down workplaces, schools, universities, and other institutions to stop the spread of the virus. Robot operating systems are widely employed in the industrial sector to clear backlog orders. Manufacturing businesses can accurately and on-time satisfy client demand thanks to the employment of robotic operating systems. As a result, it has been determined that the need for robot operating systems has greatly grown among end users worldwide since COVID-19, and this demand is anticipated to drive the market throughout the projection period.
Market Growth Factors
Increased use of automobiles across a variety of industries
Introducing new digital technology by manufacturers has improved worker safety, reliability, and quality of products, as well as shorter lead times and cheaper operating costs. Industrial automation and the use of ROS may assist with several benefits. In a manufacturing context, ROS automation might seem like a daunting strategy to implement. Still, it is more likely than ever and can pack a strong punch to increase a firm's competitive edge. The production of robots has risen significantly during the 1990s, which has resulted in a fall in the price of such equipment. The economic benefit of deploying ROS robots is particularly noticeable compared to growing labor costs. This supports the growth of the regional market.
Manufacturers using ROS more often
Although Open Robotics paved the way for ROS 2.0, ROS and ROS-Industrial continue to be great alternatives for creating various new technology robotic applications, products, and services. The latest ROS framework increased the digitization of industrial settings using the Industrial Internet of Things (IIoT), the Cloud, and Artificial Intelligence. ROS 2.0 is designed to handle multi-robot systems, real-time control, enhanced security, and more in addition to becoming cross-platform compatible, opening the door to more complex industrial applications. As a result, there are significant possibilities for the robot operating market in the next years.
Market Restraining Factors
Safety concerns related to robotic systems
Several safety concerns accompany industrial robots. Some robots are fast and agile, especially those used in typical industrial settings. This raises the risk of danger since, for example, one swing from a robotic arm might result in catastrophic physical trauma. When a robot breaks down or needs repair, there are extra hazards. A malfunctioning robot may hurt workers since these devices are often unreliable. If a robotic arm in a vehicle assembly line develops a jammed motor, the worker repairing the jam can be struck by the arm when it gets unjammed. This supports the growth of the regional market.
Type Outlook
Based on type, the Robot Operating System Market is divided into SCARA Robots, Parallel Robots, Articulated Robots, Collaborative Robots, and Others. The articulated robots segment accounted for the prominent revenue share in the market in 2021. For several reasons, articulating robots are excellent for assembly applications. They can move in ways other robots cannot, owing to their joints. They can also transfer items other robot kinds couldn't lift due to their payload capacity. Even simple assembly chores may be done with their accuracy. Because of this, articulated robots are often used to carry out assembly tasks.
Application Outlook
Based on application, the robot operating system market is categorized into Co-Packing & end-Of-Line Packaging, Plastic Injection & Blow Moulding, Pick & Place, Testing & Qualitative Inspection, PCB Handling & ICT, Metal Stamping & Press Tending, and Others. The pick and place segment registered the prominent revenue share in the robot operating system market in 2021. Pick and place robots have a focus on consistency and speed. Robots are readily programmable, allowing them to be utilized in various applications, and they may be tailored to fit specific manufacturing needs. Pick and place robots come in various shapes, but they are often lightweight and tiny, making them perfect for situations where there is a lack of room.
Industry Vertical Outlook
Based on the industry vertical, the robot operating system market is segmented into Food & Beverage, Automotive, Metal & Machinery, Electrical & Electronics, Healthcare, Rubber, Plastic, & Others. The metal & machinery segment procured the considerable revenue share in 2021. The metal and equipment sector mainly depends on automation and robots to reduce costs, increase output, and protect employees from unnecessary dangers. Metal product manufacturers are always searching for innovative methods to optimize their business processes and efficiently distribute their human workforce in the competitive market for metal and industrial items and structural components of today.
Regional Outlook
Based on region, the robot operating system market is categorized into North America, Europe, Asia Pacific, and LAMEA. In 2021, the Asia Pacific region garnered the highest revenue share in the robot operating system market. This is due to the expansion of the manufacturing industry, which is likely to boost demand for industrial safety and drive market development in this area. The expanding growth in the surrounding nations is anticipated to open up several new chances for ROS providers in APAC. In countries like China and Japan, the demand for robots is being driven by an elderly population on the rise. In addition, the rising use of robotics in various sectors, such as healthcare and education, is a further driver of the ROS market's expansion in APAC.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Kuka AG (Midea Investment Holding Co., Ltd.), FANUC Corporation, Yaskawa Electric Corporation, Microsoft Corporation, OMRON Corporation, Clearpath Robotics, Inc., iRobot Corporation (Amazon.com, Inc.), ABB Group, Denso Corporation, and Teradyne, Inc. (Universal Robots A/S).
Strategies Deployed in Robot Operating System Market
Oct-2022: Clearpath Robotics unveiled OutdoorNav, an autonomous navigation software platform developed for OEMs, vehicle developers, and robotics researchers. Additionally, OutdoorNav supplies trustworthy GPS-based navigation for quicker and more efficient autonomous vehicle development.
May-2022: Clearpath Robotics came into collaboration with Open Robotics, a primary maintainer of the Robot Operating System (ROS) and Gazebo simulator. Under this collaboration, both organizations founded TurtleBot 4 which is the next generation of the world's most popular open-source robotics platform. Furthermore, TurtleBot 4 is a fully expandable and low-cost mobile robotics platform with enhanced sensing, ROS 2 support, increased payload capacity, and auto-docking capabilities for developers, researchers, and educators.
May-2022: iRobot Corporation unveiled the iRobot OS. The new OS is the expansion of iRobot's Genius Home Intelligence platform. Additionally, iRobot OS offers a new level of customer experience for a healthier, cleaner, and smarter home.
Apr-2021: KUKA AG unveiled iiQKA.OS is the first element of the future operating system. The latest operating system would create the floor of an entire ecosystem and deliver access to a powerful selection of programs, apps, services, equipment, and components that are manageable to install, operate and use to improve the system. Additionally, the iiQKA Ecosystem is based on iiQKA.OS would make it feasible for beginners to implement automation without technical training and significantly improve and simplify the process for experts.
May-2020: Clearpath Robotics collaborated with Microsoft Corporation. Through this collaboration, both organizations have worked together to bring assets for ROS on Windows 10 IoT Enterprise and Windows 10 Desktop, to Clearpath robots, beginning with Jackal UGV. Moreover, Clearpath Robotics is providing the ROS community with better choices and flexibility when designing robotic systems.
Apr-2019: FANUC Corporation collaborated with Preferred Networks, Inc, a company that develops practical applications of deep learning and other cutting-edge technologies. Under this collaboration, FANUC Corporation has developed and would be able to release the latest AI functions that use machine learning and deep learning. Moreover, FANUC robots fitted with the new function can review and decide whether a part is good or bad which would be based on illustration images of good and bad parts.
Sep-2018: Microsoft Corporation unveiled carry ROS with tools and a set of libraries for building complex robots to Azure and Windows. Additionally, Microsoft's goal with this activity is to carry the intelligent edge to education, in homes, robotics, industrial and commercial robots.
Market Segments covered in the Report:
By Application
By Type
By Vertical
By Geography
Companies Profiled
Unique Offerings from KBV Research
List of Figures