Robotics Industry Set for Seismic Change as Growth Shifts from Fixed Automation to Mobile Systems in Enterprise
The robotics market is set to transform over the next 10 years, based on the most comprehensive robotics tracker yet released by global tech market advisory firm, ABI Research (News - Alert). There will be enormous growth across all subsectors, highlighted in a total market valuation of US$277 billion by 2030. That growth will not be distributed evenly, however. By 2022, the burgeoning mobile robotics space will start to overtake the traditional industrial robotics market. Currently, mobile autonomy is concentrated in material handling within the supply chain, but mobile robots are set to touch every sector of the global economy for a wide range of use-cases.
"Everyone talks about self-driving passenger vehicles, but mobile automation is far more developed in intralogistics for fulfillment and industry," said Rian Whitton, Senior Analyst at ABI Research. "The automation of material handling will see huge segments of the global forklift, tow truck, and indoor vehicle market consumed by robotics vendors and Original Equipment Manufacturers (OEMs) that bring indoor autonomy." Amazon Robotics is the leader that has driven growth in mobile robotics for the last 7 years since their acquisition of Kiva Systems. With an estimated 256,000 automated guided vehicles deployed to date, Amazon holds close to 50% of material handling robot market share and is broadening its portfolio of robot subtypes with autonomous mobile robots for transport and delivery. Other major Automated Guided Vehicle (AGV) developers like Quicktron, JD.com, Geek, and Grey Orange (News - Alert) are deploying thousands of robots yearly, while Automated Mobile Robot (AMR) developers are just beginning to scale up. Brain Corp. has deployed 5,000 systems primarily in retail, and BlueBotics has deployed some 2,000 robots for intralogistics in and around the supply chain. Meanwhile MiR, an AMR company acquired by Teradyne (News - Alert) in 2018, is beginning to achieve growth rates in excess of the company's other robotics acquisition of major cobot developer, Universal Robots.
The distinction between AGVs and AMRs can be contested, but AMRs do not require external infrastructure to localize themselves and are built with sensors and cameras to self-navigate their environments. Currently, AGVs represent the majority of mobile robot shipments, but by 2030, this will change. While there will be 2.5 million AGVs shipped in 2030, the total shipments of AMRs will reach 2.9 million in the same year. This is due to the declining costs of superior navigation and the desire to build flexibility into robotic fleets. "Many new verticls, like hospitality, delivery, and infrastructure, will demand systems that do not require external physical infrastructure to move about. While AGVs will thrive in intralogistics for fulfillment, especially in greenfield warehouses, AMRs solve the challenges faced by many end users by offering incremental automation that does not require a complete change of environmental infrastructure," Whitton explains.
In a major example of automation extending to new and important vehicle-types, the shipments of automated forklifts are set to grow from 4,000 in 2020 to 455,000 in 2030, with a CAGR of 58.9%. Meanwhile the revenue for all mobile robotics is expected to exceed US$224 billion by 2030, compared to US$39 billion for industrial and collaborative systems. Leading the way in mobile robotics are French manufacturer Balyo (which partnered with Amazon), Seegrid (who have sold over 800 units) and a number of smaller actors that are just beginning to scale. This opportunity is leading vehicle manufacturers such as Toyota, Yale & Hyster, and Raymond to partner with robotics companies to offer automation to manufacturers. Given the global shipments for forklifts is close to 1 million, half of all shipments could be automated by 2030.
Another significant sector for mobile automation will be maintenance and cleaning. There are already over 5,000 autonomous floor scrubbers in U.S. retail stores and commercial buildings. With Softbank's (News - Alert) deployment of mobile cleaners for offices being rolled out in Asia and the United States, cleaning robots will become a common sight within the service economy.
Even more esoteric form factors, like quadrupeds, are expected to increase significantly for data collection purposes, particularly for real estate, construction, and industrial inspection. ABI Research predicts that quadrupeds, exemplified by vendors like Boston Dynamics, Zoa Robotics, ANYbotics, and Ghost Robotics, will increase to 29,000 yearly shipments by 2030. "As mature sectors of the robotics industry achieve growth more in line with established technology markets, mobile robotics are set to create lasting transformative effects across the supply chain and will become increasingly ubiquitous throughout the global economy," Whitton concludes.
These findings are from ABI Research's Commercial and Industrial Robotics market data report. This report is part of the company's Industrial, Collaborative & Commercial Robotics research service, which includes research, data, and ABI Insights. Market Data spreadsheets are composed of deep data, market share analysis, and highly segmented, service-specific forecasts to provide detailed insight where opportunities lie.
About ABI Research
ABI Research provides strategic guidance to visionaries, delivering actionable intelligence on the transformative technologies that are dramatically reshaping industries, economies, and workforces across the world. ABI Research's global team of analysts publish groundbreaking studies often years ahead of other technology advisory firms, empowering our clients to stay ahead of their markets and their competitors.
For more information about ABI Research's services, contact us at +1.516.624.2500 in the Americas, +44.203.326.0140 in Europe, +65.6592.0290 in Asia-Pacific or visit www.abiresearch.com.
Real-time Insights: A Case Study for the Next Generation of Smart Construction Ecosystem
Occupant Wellness in the Indoor Environment