Mining Archives - The Robot Report https://www.therobotreport.com/category/markets-industries/mining/ Robotics news, research and analysis Wed, 22 Nov 2023 13:31:14 +0000 en-US hourly 1 https://wordpress.org/?v=6.5.2 https://www.therobotreport.com/wp-content/uploads/2017/08/cropped-robot-report-site-32x32.png Mining Archives - The Robot Report https://www.therobotreport.com/category/markets-industries/mining/ 32 32 Australia robotics industry overview published by HowToRobot https://www.therobotreport.com/australia-robotics-industry-overview-published-howtorobot/ https://www.therobotreport.com/australia-robotics-industry-overview-published-howtorobot/#respond Wed, 22 Nov 2023 12:00:07 +0000 https://www.therobotreport.com/?p=568569 New research from HowToRobot and Robotics Australia Group reveals how Australia’s industry uses the country’s unique strengths in the global robotics race.

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Australia robotics sector report cover

Robotics is growing across sectors in Australia, finds a recent report. Source: HowToRobot

 
As demand for commercial robots continues to grow worldwide, so too are the innovation and vendor communities to serve them. A new report from HowToRobot.com and Robotics Australia Group found 466 robotics and automation suppliers in Australia’s fast-growing sector.
 
“Many societies struggle with labor shortages and aging populations and need robots and automation to maintain living standards,” stated Søren Peters, CEO of HowToRobot. “They will count on robots to automate not only factories, but also many other sectors, where Australia has a strong focus.”
 
As a global marketplace, HowToRobot said it connects buyers with its growing network of robotics and automation suppliers. The Chicago-based company added that its digital tools, market insights, and guides are intended to help businesses understand their needs and find the right systems. 
 

Australia has a mix of factory and field robots

Australian robotics companies have specialized in automation for both factory and field, including sectors not traditionally served by robotics companies in other markets, according to the market report. These sectors include mining, which 29% of Australian robotics companies serve, it said.
 
Twenty percent of Australian companies support the construction industry, and 19% serve the agriculture and forestry sectors, said HowToRobot and Robotics Australia Group.
 
“As a country with vast geography and few people, we have developed a special expertise in field robotics, which can operate in challenging, unstructured environments,” said Dr. Sue Keay, chair of Robotics Australia Group. She is the sister of Andra Keay, managing director of Silicon Valley Robotics.
 
Examples of field robotics include swarms of robots used in agriculture, underwater robots for offshore inspection, and mobile robots for inspecting outdoor areas that are difficult to access. The report noted that robotics countries in Australia focus on automating tasks across industries, such as handling and picking items, covered by 51% of robotics suppliers.
 
In addition, 37% of suppliers support inspection and quality control, 33% automate logistics and storage functions, and 28% provide robots for packing and palletizing, said the report.
 
Australia has a robot density, or number of robots per 10,000 workers, of 134 units, according to the 2021 World Robot Report from the International Federation of Robotics (IFR). That was higher than the European average of 123 units but lower than that of the top countries, including South Korea, Singapore, Japan, Germany, and Sweden, as well as that of the U.S. at 255 or China at 246.
 
 

HowToRobot, Robotics Australia Group co-produce report

HowToRobot partnered with Robotics Australia Group to conduct research and produce the “2023 Market Overview of Robot and Automation Companies in Australia.” 
 
Robotics Australia Group is an incorporated not-for-profit organization intended to act as “the voice for robotics in Australia.” The organization said its mission is to facilitate the growth of a sustainable and internationally competitive national robotics industry.
 
The report also found that out of Australia’s 466 robotics suppliers, 57% are integrators, 19% manufacture robots or drones, and 15% supply components. Seven percent are distributors, and 3% count as advisors.
 
In addition to the robotics industry itself, 47% of suppliers serve metals and machinery, 42% support logistics, and 30% supply the food and beverage industry.
 
The report said that non-manufacturing industries also received a strong robotics focus in Australia. In addition to mining and construction, 24% of suppliers provide robots for the energy sector, and 17% supply the recycling industry.
 
 

Study intended to support robotics growth

The effort to map robotics providers in Australia can help break down barriers to robot adoption, said Peters.

“A growing number of businesses need automation but often struggle with getting started,” he observed. “Where do you find the right solution and business to provide it if you don’t know where to look?”

“Providing an overview of the industry is a first step towards bringing our global marketplace to Australia and making it easier for businesses to find the right robotics and automation providers,” Peters added.

The industry overview is not only useful for businesses dealing directly with the robotics industry, but it can also help build a better public understanding of robotics in Australia in a timely way, said Keay. In May, the Australian government established a committee and published a discussion paper proposing a national robotics strategy.
 
“Robotics is on the public agenda like never before with the upcoming national robotics strategy,” she said. “Knowing who our robotics providers are helps us understand the key strengths of the industry to build on.”
 
The full report contains more information about the market for robotics and automation in Australia, including statistics on robotics companies and a complete data sheet containing every supplier identified in the research. It is available at HowToRobot.com.
 

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Stratom launches autonomous ground vehicle refueling solution https://www.therobotreport.com/stratom-launches-autonomous-ground-vehicle-refueling-solution/ https://www.therobotreport.com/stratom-launches-autonomous-ground-vehicle-refueling-solution/#respond Wed, 03 Aug 2022 14:28:47 +0000 https://www.therobotreport.com/?p=563464 The Stratom RAPID solution can be configured to refuel any type of fuel, including diesel, gas, hydrogen and electric charging.

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a robot arm hold a refueling hose next to a military vehicle

Stratom RAPID uses an industrial robot arm to autonomously refuel a military vehicle. | Credit: Stratom

Stratom is a Colorado-based, veteran-owned robotics company that is helping automate various logistics processes for the United States military. Today, the company launched RAPID, its autonomous refueling, recharging and liquid transfer system for rugged environments and a variety of applications.

The solution leverages an industrial robot arm to autonomously locate a refueling port on a vehicle and then deliver the fuel. The system is ruggedized and designed to be deployed in the field, in adverse and difficult conditions.

Stratom’s core autonomy software drives the entire system, and the solution is versatile enough so that it can be configured for any number of mounting use cases and fuel types.

RAPID is adaptable to different vehicle types and can be deployed for a variety of applications, from mining, warehouse operations, trucking, aviation and cargo movement to high-volume container refilling and the transport of other materials, including water, other liquids and hazardous wastes.

The system can be used in both autonomous and human-operated applications. It can be operated remotely, so that the refueling operator can remain in another vehicle, bunker or a safe distance away. Vehicle operators do not need to exit their vehicles during the refueling process.


“Autonomy is transforming how we live, work, learn and entertain ourselves. Trends are increasingly showing that applications of this technology center around autonomous vehicles and the deployment of autonomous fleets,” said Mark Gordon, president and CEO of Stratom. “As the world moves toward an autonomous future, why bring humans back in the loop? At Stratom, we automate monotonous, difficult or dangerous tasks to help keep organizations — and their most valuable asset, their people — operating safely and at peak efficiency.”

a stratom robot arm refuels a helicopter

Stratom has already deployed the RAPID solution to refuel helicopters. | Credit: Stratom

Stratom has deployed a number of autonomous refueling solutions, including helicopter refueling stations. The portability of the solution is key to the design as it allows the entire system to be transported and deployed to support mobile operations in the field.

Stratom claims the operational benefits of RAPID include:

  • Reduced human exposure to hazardous environments
  • Improved productivity and efficiency of fuel delivery system
  • Streamlined configurability as a self-sufficient containerized system
  • Ruggedized design for deployment in the most austere environments
  • Increased resilience of operations

“Delivering a completely customized, groundbreaking solution aligned with the evolution of autonomous vehicles empowers Stratom to partner with innovative companies across industries to continue to solve the most pressing real-world operational challenges,” said Ryan DelGizzi, Stratom’s director of engineering. “With RAPID, crewed and uncrewed transportation and logistics operations decision-makers can significantly increase project flexibility and cost-efficiency while simultaneously solving productivity and safety challenges related to conveying significant amounts of liquid or fueling or recharging autonomous systems, vehicles, aircraft and other platforms.”

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Impossible Mining raises $10.1M for underwater mining robot https://www.therobotreport.com/impossible-mining-raises-10-1m-for-underwater-mining-robot/ https://www.therobotreport.com/impossible-mining-raises-10-1m-for-underwater-mining-robot/#respond Mon, 27 Jun 2022 21:29:45 +0000 https://www.therobotreport.com/?p=563140 Impossible Mining is developing a AUV that will travel up to four-miles deep into the ocean to harvest polymetallic nodules individually.

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Impossible Mining, a company developing an autonomous underwater vehicle (AUV) that uses a pick and place manipulator to harvest battery materials from the deep seabed, announced that it brought in $10.1 million in seed funding. 

The company began working on the engineering architecture for its AUV in 2020, and filed its first patents in 2021. Impossible Mining also raised its first funding round in 2021, allowing it to begin work on Proof of Concept for its nodule harvesting and bio-extraction technologies, which it hopes to finish in late 2022.

When finished, Impossible Mining’s AUV will travel up to four-miles deep into the ocean to harvest polymetallic nodules individually. The robot will be equipped with image sensing technology so that it can identify megafauna present on the nodules and leave the ones with megafauna present untouched. 

“The US needs independent, secure access to critical battery metals. We are excited to accelerate the production of our deep water robots with this injection of capital, and to prove to both regulators and stakeholders that we can achieve what dredge-based technology can’t – the preservation of the seafloor environment,” Oliver Gunasekara, CEO & co-founder of Impossible Mining, said.

The company’s solution has a low environmental impact as it avoids disturbing nodule fauna, has no significant plume, no return water and leaves no impact on sediment structure or sediment fauna. The solution is also easily scalable by simply adding more robots. 

Justin Hamilton led the funding round, which also included participation from a select group of YC investors. Impossible Mining plans to use the funds from the round to develop and test its robotic collections system and continue developing its bio-extraction technology. 

“Lithium-ion battery markets will increase tenfold in the next decade, fueled by growth in EVs,” Hamilton said. “The deep seabed contains the largest global resource of battery metals. The Impossible Mining team has demonstrated its robotics technology showing the capabilities for selective pickup, rising to the challenge of accessing these metals in an environmentally responsible way.”

Along with the funding, Impossible Mining announced its key advisors: Bob Galyen, former CTO of CATL, Dan Lankford, former CEO of AT&T Microelectronics, Europe, Justin Manley, an AUV design expert, Simon Segars, former CEO of ARM and former board member of SoftBank and Phil Straw, CEO of SoftIron. 

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Hiring levels for robotics jobs in mining hit year high in May https://www.therobotreport.com/hiring-levels-for-robotics-jobs-in-mining-hit-year-high-in-may/ https://www.therobotreport.com/hiring-levels-for-robotics-jobs-in-mining-hit-year-high-in-may/#respond Thu, 23 Jun 2022 21:39:27 +0000 https://www.therobotreport.com/?p=563127 39.7% of mining companies included in an analysis conducted by Mining Technology were recruiting for robotics related positions in May 2022.

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robots in mine

ADP deployed ten of its robots to aid in surveying the collapsed mine. | Source: ADP

39.7% of mining companies included in an analysis conducted by Mining Technology were recruiting for robotics related positions in May 2022. This marks a year high for hiring robotics jobs in this sector. 

In April 2022, just 33.3% of mining companies surveyed had robotics openings, and a year ago, that number was at just 17.9%. The number of mining companies that are looking to fill robotics positions has been steadily rising since February 2022, when 21.1% were looking. 

Mining companies are currently hiring for robotics jobs at a higher rate than the average for all companies. In total, 1.2% of newly posted job advertisements in May 2022 were linked to robotics, the highest monthly figure recorded in the past year, according to Mining Technology. 

Robotics provide many opportunities in the mining industry, where many jobs are very dangerous for people to perform. 

For example, a limestone mine over 100 years old near Crab Orchard Tennessee collapsed suddenly in August 2021. The collapse left an 800 ft across and 100 ft deep surface subsidence area that the US Mine Safety and Health Administration (MSHA) determined was too dangerous for a person to explore.

The mining team used robots from Australian Droid and Robot (ADR) to inspect what was left of the mine, which allows mine workers to determine what was safe and to restore power and communications in the mine. 

The robotics industry as a whole is expected to grow at a CAGR of 20% to $568 billion by 2030, according to analysis from Mining Technology.   

Editor’s Note: The Field Robotics Engineering Forum will take place on October 19-20, 2022 at the Santa Clara Convention Center. The forum is an international conference and exposition specifically designed to provide engineers, engineering management, business professionals and others, with the information, guidance and peer networking opportunities they need to successfully develop and safely deploy the next generation of robotics systems for operation in wide-ranging, outdoor, dynamic environments.

WTWH Media is currently accepting session abstracts to be considered for presentation at the event. The Field Robotics Engineering Forum is seeking thought-provoking sessions delivered by compelling speakers in each of the four tracks, technologies, tools and platforms, development, testing and deployment, and markets and applications. 

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Field Robotics Engineering Forum call for speakers open https://www.therobotreport.com/field-robotics-engineering-forum-call-for-speakers-open/ https://www.therobotreport.com/field-robotics-engineering-forum-call-for-speakers-open/#respond Tue, 14 Jun 2022 18:54:32 +0000 https://www.therobotreport.com/?p=563061 The Field Robotics Engineering Forum seeks submissions that focus on the design and development of robotics systems that operate in outdoor, unstructured and dynamic environments, such as construction worksites, open mines, and farm fields, as well as busy urban centers.

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WTWH Media invites you to submit a session abstract to be considered for presentation at the Field Robotics Engineering Forum, to be held October 19-20, 2022 at the Santa Clara Convention Center, Santa Clara, CA.

The Field Robotics Engineering Forum is an international conference and exposition specifically designed to provide engineers, engineering management, business professionals and others, with the information, guidance and peer networking opportunities they need to successfully develop and safely deploy the next generation of robotics systems for operation in wide-ranging, outdoor, dynamic environments.

The Field Robotics Engineering Forum is seeking thought-provoking sessions delivered by compelling speakers in each of the four tracks listed below:

  • Technologies, Tools and Platforms Track – Sessions in the Technologies, Tools and Platforms will cover the latest advances in the ‘core’ technologies common to all classes of field robotics systems that allow them to “Sense, Think and Act”.
  • Development, Testing and Deployment Track – Topics covered in the Development, Testing and Deployment Track focus on robotics design, development, and testing tools, as well as standards and methodologies, that speed and ease the development and deployment of field robotics systems.
  • Markets and Applications Track – Sessions in the Markets and Applications Track focus on those industry and application specific attributes unique to specific field robotics systems, with sessions providing insights and recommendations into the optimal design, development and deployment choice for specific system classes.

Submission form

Deadline
The entry deadline for submitting speaker proposals is June 30, 2022.

All speakers receive

  • Complimentary full registration
  • Admission to all keynotes, general sessions, panels, special events, breakfasts, lunches and receptions
  • Complimentary guest registrations up to two attendees

Co-located events
The Field Robotics Engineering Forum will be co-located with the RoboBusiness, an international conference and exposition designed to provide engineers, engineering management, business professionals and others, with the information, guidance and peer networking opportunities they require to successfully develop and safely deploy the next generation of field robotics systems for operation in wide-ranging, outdoor, dynamic environments.

Also co-located with RoboBusiness is DeviceTalks West, the premier industry event for medical technology professionals, currently in its ninth year. Both events attract engineering and business professionals from a broad range of healthcare and medical technology backgrounds.

Sponsorship opportunities
For information about sponsorship and exhibition opportunities, download the prospectus. Question regarding sponsorship opportunities should be directed to Courtney Nagle at cnagle[AT]wtwhmedia.com.

Conference programming
For questions regarding RoboBusiness Conference & Expo conference programming, contact Dan Kara at dkara[AT]wtwhmedia.com.

About WTWH Media
WTWH Media is an integrated media company serving engineering, business and investment professionals through 50+ websites, 5 print publications, along with many other technical and business events. WTWH’s Robotics Group produces The Robot Report, Robotics Business Review, Collaborative Robotics Trends and Mobile Robot Guide, online technical, business and investment news and information portals focused on robotics and intelligent systems. WTWH Media also produces leading in-person robotics conferences including the Robotics Summit & Expo, RoboBusiness the Field Robotics Engineering Forum and the Healthcare Robotics Engineering Forum. See www.wtwhmedia.com for more information.

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Teleo announces $12M in Series A funding https://www.therobotreport.com/teleo-announces-12m-in-series-a-funding/ https://www.therobotreport.com/teleo-announces-12m-in-series-a-funding/#respond Mon, 13 Jun 2022 21:52:31 +0000 https://www.therobotreport.com/?p=563048 Teleo closed its Series A funding round with $12 million raised for its semi-autonomous retrofit kits for heavy construction equipment.

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teleo series a

Teleo creates retrofit kits for heavy equipment that allows the equipment to operate semi-autonomously. | Source: Teleo

Teleo, a company that creates semi-autonomous retrofit kits for heavy construction and mining equipment, announced it raised $12 million in Series A funding. The company plans to use the funds from the round to scale the deployment of, and invest in research and development for, its Teleo Supervised Autonomy technology.

The company’s autonomy kits can be fitted onto heavy equipment to allow it to run without an operator in the cabin. Teleo’s Supervised Autonomy allows an operator to control multiple pieces of equipment form a remote control station. 

“With this Series A funding, we plan to double down on hardening and deploying technology that lets our customers operate their existing fleets of heavy equipment semi-autonomously,” Vinay Shet, co-founder and CEO of Teleo, said.

UP.Partners, a firm that invests in technology that helps transport people and goods faster, safer and cleaner, led the funding round. New investors, F-Prime Capital and K9 Ventures, also participated in the round, as well as Trucks Venture Capital, which led Teleo’s seed funding round.

“Teleo was founded by two exceptional individuals, with extensive backgrounds in deep technology and autonomy. We believe their approach to bringing human supervised autonomy to the heavy equipment market is incredibly insightful and important. Teleo’s technology positively impacts the ROI of operation, while both upskilling the operator community, and increasing safety levels,” Adam Grosser, chairman and managing partner of UP.Partners, said.

Along with the funding, Teleo announced a partnership with RDO Equipment Co., a construction equipment technology supplier and one of John Deere’s largest dealerships. According to the company, partnering with heavy equipment distributors like RDO will allow it to reach customers across multiple distribution channels. 

Teleo was founded in 2019 by Shet and Rom Clement, the company’s current CTO. Shet and Clement both worked at Lyft prior to founding Teleo, Shet as the company’s Director of Product Management and Clement as the Head of Hardware Engineering. 

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How robots helped a collapsed mine get back in operation https://www.therobotreport.com/how-robots-helped-a-collapsed-mine-get-back-in-operation/ https://www.therobotreport.com/how-robots-helped-a-collapsed-mine-get-back-in-operation/#respond Mon, 07 Feb 2022 22:13:13 +0000 https://www.therobotreport.com/?p=561678 Manned explorations weren't possible after the Lhoist North American limestone mine collapsed in 2021, so the team turned to robots instead.

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robots in mine

ADR deployed ten of its robots to aid in surveying the collapsed mine. | Source: ADR

Early in the morning on August 13, 2021, Justin Disney, the mine supervisor at the Lhoist North American limestone mine near Crab Orchard Tennessee, heard a sound he had never heard in his 16 years working in a mine.

“Like rain coming off the pillars,” Disney said. “At that moment something just dawned on me, and I started an evacuation. At 6:40 everyone was accounted for, and at about 6:59 and 48 seconds, the mine collapsed.”

The mine, which is more than 100 years old, let out a gust of air, dirt and debris moving at an estimated 120 MPH from all portals and ventilation shafts when it collapsed. Because of Disney’s evacuation, nobody was injured during the incident.

The US Mine Safety and Health administration (MSHA) quickly determined that the 800 ft across and 100 ft deep surface subsidence area left by the collapse was too dangerous for a person to explore. A robotic solution, however, wouldn’t be easy either.

Before the collapse, mine workers used a 2-way radio system that ran over a leaky feeder from PBE Group. The leaky feeder didn’t have the bandwidth to support unmanned drones or robots. Even if it could, it wasn’t operational after the collapse.

“It’s a unique challenge to try to provide a communication system underground to allow the data throughput to handle the video and LiDAR applications that were needed without infrastructure on the ground,” Wes Leffel, senior sales engineer at PBE Group, said.

With no network or power post-collapse, Rob Koch, director of technology at PBE, decided the best solution would be a wireless IP network with low latency and high throughput. Koch eventually settled on using an IP mesh network from Rajant and robots from Australian Droid and Robot (ADR). PBE, Rajant and ADR had worked together on previous solutions.

The team used 10 ADR Explora XL unmanned robots, a Rajant wireless Kinetic Mesh below-ground communication network and PBE hardware and technology. The robots placed three network infrastructure points within the mine, the deepest being 1.7 km, and set up eight robot hubs.

“We were able to form a really good visualization of where the collapse occurred and the safe areas where we can send manned explorations in,” Callum MacDermid, senior robotics engineer at ADR, said.

ADR’s robots inspected all required areas of the mine while live feeding video data at up to 80 Mbps. The robots were able to complete the inspection and allow mine workers back into the mine to restore power and communications.

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Boston Dynamics Spot learns new skills with 3.0 release https://www.therobotreport.com/boston-dynamics-spot-3-0-release/ https://www.therobotreport.com/boston-dynamics-spot-3-0-release/#comments Wed, 15 Sep 2021 16:52:21 +0000 https://www.therobotreport.com/?p=560418 Spot Release 3.0 enhances its data collection capabilities to improve ease of use and efficiency for facility inspection.

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Boston Dynamics Spot

Spot Release 3.0 adds functionality to make Spot the data collection solution you need for safer and more efficient inspection rounds. | Image credit: Boston Dynamics

Boston Dynamics enhances its popular Spot robot with the new Spot Release 3.0. This new release delivers flexible autonomy and repeatable data capture, and makes Spot more efficient to operate.

  • Autowalk adds powerful new capabilities, enabling operators to record autonomous missions that implement dynamic sensing sitewide.
  • Improvements to data capture making it reliable and easier to process.
  • Plus a range of new features designed to enable new sensor payloads, along with other enterprise integrations to extract/exchange data.

Spot can be a great choice for an autonomous, mobile data gathering platform, especially in adverse environments. Boston Dynamics has invested thousands of engineering hours into optimizing the legged locomotion of Spot. As a result, Spot is capable of reliable operation in environments where wheeled AMRs struggle to navigate.

Since its release, Boston Dynamics continues to enhance the capabilities of Spot. Feedback from customers, and the experience gained from operating in difficult, industrial situations, is enabling the Spot development team to improve Spot’s capabilities. Spot 3.0 is purely a software upgrade and all existing Spot customers can benefit from the new features.

Improved autonomy for Autowalk

Spot’s Autowalk system has logged thousands of miles in industrial facilities and on construction sites around the world. Release 3.0 adds powerful new capabilities to Autowalk, enabling operators to record autonomous missions that implement dynamic sensing site-wide.

  • Mission editing: Map an entire site by extending paths and adding new inspection Actions to existing missions over multiple recording sessions.
  • Mission planning: Save time by selecting which inspection Actions you want Spot to perform, and it will take the shortest path to collect data.
  • Dynamic replanning: Don’t miss inspections due to changes on site. Spot will replan around blocked paths to make sure it gets the data it was assigned to gather.
  • Scheduled missions: Inspect a site after hours with simple scheduling tools and tablet-free, unsupervised autonomy.

More reliable data collection

Spot often operates in remote, un-supervised environment such as mines, construction sites and oil/gas production facilities. During a normal day, a Spot robot might patrol areas of a facility where there are not reliable network connections.

Release 3.0 makes data capture more reliable and easier to process. Users can connect computer vision models to Spot, adding valuable context to teleoperation and turning raw mission data into actionable signals at the edge.

  • Repeatable image capture: Capture the same image from the same angle every time with scene-based camera alignment for the Spot CAM+ pan-tilt-zoom (PTZ) camera.
  • Live review of computer vision models: Use models from TensorFlow or choose a model from our API library to carry out inspection tasks such as gauge reading, thermal analysis, or acoustic anomaly detection. Preview computer vision models on the tablet and create smart Actions that process images within Autowalk.

Enterprise integrations

Spot closes the loop with enterprise systems to understand and manage operations. This helps teams to manage assets, detect anomalies sooner, track work, build digital twins, and more.

  • Upload data: Automatically push data into enterprise systems at the end of a mission with custom code.
  • Cloud-compatible: Connect Spot to AWS, Azure, IBM Maximo, and other systems with existing or easy-to-build integrations.
  • Scout: Use Boston Dynamics’ web-based remote operation application to manage an entire dynamic sensing fleet, schedule missions, and review data collected on site.

Additional new features

Release 3.0 contains dozens of other features designed to help Spot become easier to program, troubleshoot and operate, while enabling dynamic sensing onsite.

  • Payloads: Remotely restart payloads, easily configure payload parameters, and more.
  • Manipulation: Remotely operate the Spot Arm with ease through rear Spot CAM integration and split-screen view. Arm improvements also include added functionality for push-bar doors, revamped grasping UX, and updated SDK.
  • Sounds: Keep trained bystanders aware of Spot with configurable warning sounds.

For further details, check out the Spot 3.0 Release Notes on the Boston Dynamics website.

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Oxbotica raises $47M to scale autonomous vehicle software https://www.therobotreport.com/oxbotica-raises-47m-scale-autonomous-vehicle-software/ https://www.therobotreport.com/oxbotica-raises-47m-scale-autonomous-vehicle-software/#respond Wed, 06 Jan 2021 01:49:23 +0000 https://www.therobotreport.com/?p=558615 Oxbotica's Selenium platform handles an autonomous vehicle's navigation, mapping, perception, and machine learning. Oxbotica said Selenium doesn't need to rely on external infrastructure such as GPS, lane markings or pre-existing HD maps.

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Oxbotica

Oxbotica’s autonomous vehicle software doesn’t rely on infrastructure such as GPS and pre-existing maps. | Credit: Oxbotica

Oxbotica, an Oxford, England-based startup that develops autonomous vehicle software, closed a $47 million Series B investment today. Oxbotica, which spun out of Oxford University in 2014, has now raised about $80 million to date.

The Series B was led by bp ventures, the investing arm of oil and gas giant bp. BGF, Halma, HostPlus, IP Group, Tencent, Venture Science and others also participated in the round.

The new funding will help scale Oxbotica’s autonomous vehicle software, called Selenium, across multiple industries. Oxbotica will start with vehicles used in industrial applications such as mining and port logistics. Perhaps its lead investor, bp, is a sign of the size of its potential customers and projects in the industrial space. Oxbotica said on-road applications such as the transportation of goods and people are further out.

Selenium can handle an autonomous vehicle’s navigation, mapping, perception, and machine learning. Oxbotica said Selenium doesn’t need to rely on external infrastructure such as GPS, lane markings or pre-existing HD maps, although those can be used if available. Oxbotica said this makes the technology well suited to work both outdoors and indoors, as well as for on-road and off-road applications. Watch the video below to learn more about how Selenium applies to mining equipment.

Oxbotica said Selenium is hardware and sensor agnostic and can use radar, laser or vision sensing. It can be deployed as a standalone system or integrated into third-party stacks.

Oxbotica also offers a cloud-based fleet and data management system called Caesium. This system can integrate with Selenium to coordinate a fleet of vehicles, manage data collection, query log files, and remotely trigger specific data collection.

“This round of investment marks a key chapter in Oxbotica’s continued growth and pushes us forward in commercialising our autonomous software today, through key strategic go-to-market partnerships,” said Ozgur Tohumcu, CEO, Oxbotica. “The high-quality and global footprint of our investors cements our position as a leader in autonomy. We will use funds raised to accelerate the global deployment of our transformative technology.”

“bp ventures is delighted to invest in Oxbotica – we believe its software could accelerate the market for autonomous vehicles,” said Erin Hallock, managing partner, bp ventures.

“Oxbotica provides autonomy where it makes sense today: delivering safety, cost and environmental benefits,” said Jamie Vollbracht, Partner, Cleantech at IP Group plc. “Two years after IP Group’s first investment, we are delighted to be able to welcome multiple value-adding investors to the share register. This substantial funding round will enable Oxbotica to move to the next stage, delivering those benefits in multiple applications across the globe.”

Investments and mergers and acquisitions in the robotics industry are off to a fast start in 2021. Teledyne is acquiring FLIR for $8 billion, while Stryker acquired OrthoSensor, for an undisclosed amount, to enhance its Mako surgical robots. And AMP Robotics, a developer of pick-and-place robots that sort recyclable materials from waste flows, raised a $55 million Series B.

Oxbotica autonomous vehicle software

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Boston Dynamics talks about its big year and acquisition by Hyundai https://www.therobotreport.com/boston-dynamics-talks-about-its-big-year-and-acquisition-by-hyundai/ https://www.therobotreport.com/boston-dynamics-talks-about-its-big-year-and-acquisition-by-hyundai/#comments Wed, 16 Dec 2020 17:29:19 +0000 https://www.therobotreport.com/?p=107663 In the final Robot Report Podcast for 2020, learn about Boston Dynamics' plans for its legged robots after its acquisition by Hyundai Motor, as well as the DARPA Subterranean Challenge.

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Welcome to Episode 28 of The Robot Report Podcast, which brings conversations with robotics innovators straight to you. Join us each week for discussions with leading roboticists, innovative robotics companies, and other key members of the robotics community.

You can subscribe to The Robot Report Podcast on Amazon MusicApple PodcastsGoogle PlaySoundCloudSpotify and more. Please subscribe to the podcast and leave us a review!

This week, fellow editor Steve Crowe and I chat with returning guest Michael Patrick Perry, vice president for business development at Boston Dynamics, about the commercialization of the Spot quadruped robot. We also discuss the company’s other robots and its recent acquisition by Hyundai Motor Group.

How construction companies can save money and boost revenue with robots and AI

Boston Dynamics’ Spot at a construction site. Credit: Pomerleau

In addition, Steve and I examine the prospects for Boston Dynamics, which has had three owners in seven years — Google, SoftBank, and now Hyundai. The Waltham, Mass.-based company plans to release a gripper for its legged robot next year.

Dr. Timothy Chung, program manager at the Defense Advanced Research Projects Agency (DARPA) joins us to discuss the recently completed Virtual Cave Circuit of the DARPA Subterranean Challenge. We talk about lessons learned in the various circuits so far, the creation of a simulated environment, and how the competitors used robots and drones. Chung also looks ahead to 2021’s final DARPA SubT circuit and applications for these new technologies.

Coordinated Robotics wins Cave Circuit Virtual Competition in DARPA SubT Challenge

Coordinated Robotics in World 8 of the Cave Circuit. Source: DARPA

Finally, Steve and I continue our look back at 2020 and peek ahead to 2021. We’re grateful to our speakers, sponsors, and, most of all, our listeners for a great first year of this podcast!

If you would like to be a guest on an upcoming episode of the podcast, or if you have recommendations for future guests or segment ideas, contact Steve or Eugene. For sponsorship opportunities of The Robot Report Podcast, contact Courtney Nagle for more information.

Podcast timestamps

  • 0-6:49: Show intro
  • 6:50-46:55: Conversation with Michael Patrick Perry, VP of business development, Boston Dynamics
  • 46:56-1:21:23: Conversation with Dr. Timothy Chung, program manager for the DARPA Subterranean Challenge
  • 1:21:24-1:28:18: Show outro and end-of-year thoughts

Show notes

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Coordinated Robotics wins Cave Circuit Virtual Competition in DARPA SubT Challenge https://www.therobotreport.com/coordinated-robotics-wins-virtual-cave-circuit-darpa-subt-challenge/ https://www.therobotreport.com/coordinated-robotics-wins-virtual-cave-circuit-darpa-subt-challenge/#respond Mon, 23 Nov 2020 21:04:56 +0000 https://www.therobotreport.com/?p=107380 The Cave Circuit, the third stage of the DARPA Subterranean Challenge, was completely virtual, enabling teams to test their software and simulated hardware configurations in difficult environments.

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To encourage the development of autonomous systems to explore dangerous environments for first responders and the U.S. military, the Defense Advanced Research Projects Agency has been conducting the DARPA Subterranean Challenge. Last week, the agency announced Coordinated Robotics as the first-place winner in the Cave Circuit Virtual Competition. It was the third of four stages in the challenge, which runs from September 2018 through late 2021.

The DARPA SubT Challenge is intended to test and demonstrate the ability of autonomous robots to perceive, navigate, network, and move in a variety of GPS-denied environments. “We want to inspire and deliver robotics technologies that enable situational awareness across diverse underground environments,” said Dr. Timothy Chung, program manager for the SubT Challenge in DARPA’s Tactical Technology Office.

Coordinated Robotics, a self-funded team led by Kevin Knoedler in Newbury Park, Calif., won a $250,000 prize. Knoedler said he learned to use ground vehicles for the Tunnel Circuit and aerial vehicles for the Urban Circuit. Coordinated Robotics then combined their capabilities for the Cave Circuit. The ground robots shared information and deployed communication nodes, and the drones shared data among themselves and flew through vertical spaces. Endurance, coordination, and using the same software for both virtual and real vehicles were the keys to success, Knoedler said.

Knoedler previously won NASA’s Space Robotics Challenge single-handedly in 2017, and Coordinated Robotics won the Tunnel Circuit and was second in the virtual Urban Circuit.


Cave Circuit purely virtual

Unlike the first two elements of the DARPA SubT Challenge, which had a hardware Systems Track, the 16 teams ran their mapping and autonomy algorithms entirely in a virtual environment. This was in response to travel restrictions and the need for social distancing during the ongoing COVID-19 pandemic, but it worked so well that organizers said they plan to incorporate some simulation in the final, combined circuit.

The SubT organizers built eight “worlds” ranging from 1.5 to 5.2 km (0.9 to 3.2 mi.) in length in the cloud-based SubT Simulator from 73 “tiles” of cave elements, similar to video game design. The SubT technology repository is open-source, noted Chung.

“This virtual competition is opening the doors on who and where such competitions can occur,” Chung said. “It’s like a fantasy football league — virtual competitors could mix and match robots from across teams. New enhancements for the Cave Circuit included new robot models, dynamic environments, and communications ‘breadcrumbs.'”

“Our small team was very iterative in designing worlds,” said Angela Maio, mechanical engineer at the U.S. Army Research Laboratory and virtual competition lead. “[Factors included] percentage of areas lit, percentages traversable by UGVs [unmanned ground vehicles], size and verticality, and how devious we were in placing artifacts.”

“The robots must communicate with each other to figure out where to explore autonomously,” she said. “Different passages are constrained, plus there are some large caverns to search.”

Competitors configured simulated thermal, visual, and lidar sensors and wheeled or tracked robots or quadcopters, for a total of 17 different platforms and 58 configurations. Each team sent its robots and/or drones to navigate the eight cave courses three times, with the best score counting.

The fully autonomous systems needed to locate 20 “artifacts” hidden in the courses to within five-meter accuracy. These virtual artifacts included backpacks, cellphones, helmets, rope, and a “survivor” mannequin to simulate traces of survivors in a mining accident.

“The challenges involved in navigating unpredictable caves include tight spaces, rockfalls, and lack of visibility — all of which, and more, were incorporated into the virtual caves,” stated Chung. “Beyond pride and prize money, competitors in this and other DARPA Grand Challenges are forging new paths that we are confident will lead to important innovations to help both warfighters and first responders.”

Coordinated Robotics deployed nine virtual robots for the Cave Circuit. The team’s systems participants include the California State University Channel Islands, Oke Onwuka, and Sequoia Middle School.

SubT Cave Circuit leaderboard

SubT Cave Circuit leaderboard. Source: DARPA

Coordinated Robotics joins other winners

DARPA-funded BARCS (for Bayesian Adaptive Robot Control System), which includes researchers from Michigan Technological University and the Michigan Tech Research Institute, placed second. Only self-funded teams were eligible for monetary prices in the first three circuits, but all teams are eligible in the final event, said DARPA.

Dynamo, another one-man team led by Hilaraio Tomé in Spain, won third place and $150,000. Robotika, which includes Czech company Robotika International, the Czech University of Life Science, and the Centre for Field Robotics, plus Switzerland-based Cogito Team, placed fourth and received $100,000.

Map Quickly located a cellphone within 5 cm and won “Most Accurate Artifact.” NUS SEDS won the “Reality to Virtual Award” because its software could be most easily used on two Huskies and the 1 QAV500 robot it simulated.

In addition to first place in the Cave Circuit, Coordinated Robotics won “Dynamic Dodger,” successfully avoiding 17 simulated rockfalls.

“The DARPA Subterranean Challenge is creating a community of multidisciplinary teams with a wide variety of expertise,” Chung said. “The best solutions to challenges of navigating the underground will likely be found through combining the ideas of our many talented competitors. We’re already seeing SubT software in other contexts, such as brightening imagery in low-light settings. It’s a utility now that some folks are making use of independently.”


Countdown to the final event begins

DARPA said the final event of its SubT Challenge next autumn will include elements from all three subdomains — tunnel, urban, and cave. It said it expects to run the systems and virtual competitions at the same time.

“Hopefully, we’ll have more marsupials,” said Chung, referring to drone/UGV combinations, which combine a drone’s agility in vertical spaces with a ground robot’s endurance. “Many competitors had considered them up until submission day.”

“It’s admittedly a harder system to think about in terms of autonomy, state management, and knowing when to deploy,” he told The Robot Report.

Both DARPA-funded and self-funded teams will compete for up to $2 million in the Systems Competition and $1.5 million in the Virtual Competition. New teams are still welcome to join, said Chung.

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October 2020 Robotics Transactions Dip, but Vehicles and Drones Still Get Funding https://www.therobotreport.com/october-2020-robotics-transactions-dip-but-vehicles-and-drones-still-get-funding/ Wed, 18 Nov 2020 15:00:33 +0000 https://www.therobotreport.com/october-2020-robotics-transactions-dip-but-vehicles-and-drones-still-get-funding/ Although robotics investments, mergers, and acquisitions may have dropped a bit in October 2020, autonomous vehicles, drones, and healthcare applications continued to receive funding.

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A slight decline in investments in robotics and related technologies last month could be attributed to the ongoing coronavirus pandemic and political uncertainty around the U.S. elections. Still, autonomous vehicles, aerial drones, and healthcare systems continued to find funding in October 2020.

Companies announced 51 transactions worth a total of $851 million in October 2020, compared with 59 robotics deals worth more than $1.5 billion in September 2020 and 51 transactions worth about $1.3 billion in October 2019. Robots for agriculture, mining, and supply chain and logistics applications also obtained financing.

Last month, The Robot Report, a sibling site to Robotics Business Review, tracked funding to 44 robotics companies, in comparison with 52 the previous month and 43 a year ago. This also suggests a seasonal drop after a wave of September investments. Beyond robotics and automation, Crunchbase predicted that funding would hold steady and rebound after any October slowdown.

Tracxn October 2020

The table below lists robotics fundings in millions of U.S. dollars, where amounts were publicly available.

Robotics Investments October 2020

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Company Amt. (M$) Type Investor, partner Date Technology
AdaSky 15 Series B Kyocera Corp., Sungwoo Hitech Co. Oct. 22 thermal imaging
AEye Inc. 23 Series B Continental AG Oct. 27 lidar sensors
Agility Robotics 20 Series A DCVC, Playground Global Oct. 15 legged robots
Applied Intuition Inc. 125 Series C Lux Capital, General Catalyst, Andreessen Horowitz Oct. 22 autonomous vehicle software
Artimus Robotics 0.594 seed Oct. 30 robotic actuation
Beijing Tage Idriver Technology Co. 30.17 Series B Qianhai Fund of Funds Oct. 31 autonomous vehicles
Blue Ocean Seismic Services Ltd. 13 Series A BP Ventures Oct. 14 marine robotics
Bota Systems 0.164 seed Venture Kick Oct. 16 sensor, gripper
Dedrone 12.1 investment TempoCap Oct. 1 drone defense
Einride AB 10 investment Norrsken VC Oct. 1 autonomous trucks
Epirus 57.3 Series C Oct. 9 drone defense
Fourier Intelligence 15 Series C Yuan Jing Capital Oct. 26 exoskeleton
Genrobotics Innovations Pvt. Ltd. 0.034 pre-Series AA Anand Mahindra Oct. 7 sewer cleaning robot
HUVRdata Inc. 5 Series A Cottonwood Venture Partners Oct. 5 drone inspections
Jianjia Robots 14.72 Series B Hillhouse Capital Oct. 13 surgical robotics
Kraken Robotics 10.4 post-seed Canaccord Genuity Group Oct. 1 marine robotics
LM Industries 15 investment Mirai Creation Fund II Oct. 16 self-driving shuttle
Locomation 17 Series 2 Oct. 20 autonomous vehicles
Luminar Technologies Series C Daimler Oct. 30 lidar sensors
Manna Series A Greenman Investments Oct. 28 drone food delivery
Miko 3.14 Series A Chirate Ventures Oct. 9 educational
MINIEYE 40.7 Series C Harvest Fund, Oriental Fortune Capital, Vision+ Capital, NavInfo Oct. 28 autonomous vehicles
MOV.AI 4 Series A SOMV Oct. 13 cobot ROS environment
Myrmex Inc. seed Ocado Group Oct. 15 mobile robots
Neocis Inc. 72 Series D DFJ Growth Oct. 8 surgical robotics
Outrider 65 Series B Koch Disruptive Technologies Oct. 28 autonomous yard operations
Picnic 3 venture Vulcan Capital Oct. 7 pizza robot
QCraft.ai seed Lenovo Ventures Oct. 12 simulation software
Realtime Robotics Inc. 2 equity sale Oct. 2 software, controller
Robust.AI 15 Series A JAZZ Venture Partners Oct. 22 AI software
Root AI 0.325 investment Brown Angel Group Oct. 13 indoor robot farming
Sea Machines Robotics Inc. 5 Series B Brunswick Corp. Oct. 28 marine robotics
Shenzhen Han’s Robot Co. 24.3 Series A Suzhuo Fujishin Oct. 9 industrial automation
Shenzhen Youdi Technology Co. Series B 998.com Oct. 19 service
SwarmFarm Robotics 3.22 Series A Tenacious Ventures, Artesian Oct. 2 farming robot platform
Tevel Aerobotics Technologies Ltd. 20 Series B Maverick Ventures, OurCrowd Oct. 27 drone fruit picking
vHive 4 Series A+ Deutsche Telekom Oct. 14 drone software
VitiBot 12.9 investment Oct. 22 viticulture robot
Ware 2.5 seed UP Partners Oct. 22 inventory drones
Workhorse Group Inc. 200 investment Antara Capital GP LLC Oct. 16 electric drone delivery vehicles
YPC Technologies 1.8 seed Hike Ventures LLC, Real Ventures, Toyota AI Ventures Oct. 20 kitchen robots
Yrobot seed Baidu Ventures Oct. 29 wearable devices
Zadar Labs 4 seed Mentors Fund, Plug and Play Oct. 30 radar sensors

There were eight robotics mergers and acquisitions in October 2020, compared with seven in September 2020 and seven in October 2019. None of last month’s merger announcements included amounts.

Robotics Acquisitions, October 2020

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Company Acquirer, partner Date Technology
Advanced Control Solutions Applied Industrial Technologies Oct. 7 robot control systems
Ballard Power Systems Inc. Honeywell International Oct. 15 drone inspections
Box Robotics Inc. Seegrid Corp. Oct. 6 lidar, mobile robots
Briggo Costa Coffee Oct. 26 robotic barista
Codian Robotics VB ABB Oct. 2 pick and place delta robots
Geodetics AEVEX Aerospace Oct. 5 drone navigation
Metamoto Foretellix Oct. 7 simulation software
Zimplistic Light Ray Holdings Oct. 16 Rotimatic cooking robot

Self-driving cars and trucks pick up in funding

After a brief break in September, developers of autonomous vehicles and supporting technologies again raised the most funding in October 2020, receiving more than $364 million in investment. Applied Intuition Inc., a self-driving simulation software firm in Sunnyvale, Calif., raised Series C funding of $125 million.

Golden, Colo.-based Outrider, which is developing autonomous yard trucks, closed Series B funding of $65 million.

Related content: The Robot Report Podcast: Autonomous yard trucks from Outrider; analyzing retail robotics

Shenzhen, China-based MINIEYE raised $40.7 million in Series C funding for its sensing technology for advanced driver-assist systems (ADAS) and self-driving cars.

China-based Tage I-Driver Technology Co. raised $30.17 million in Series B funding for autonomous mining vehicles in October 2020. Meanwhile, automotive supplier Continental AG participated in the $23 million Series B round for AEye Inc., a lidar company in Pleasanton, Calif.

Tempe, Ariz.-based LM Industries, which is working on a self-driving shuttle, obtained $15 million, as did Israeli thermal imaging provider AdaSky.

Stockholm-based autonomous truck developer Einride AB received $10 million in funding, and San Jose, Calif.-based radar sensor maker Zadar Labs raised $4 million in October 2020.

Pittsburgh-based autonomous convoy firm Locomation raised $17 million in Series 2 funding. Daimler participated in unspecified Series C funding for Luminar, a lidar provider in Orlando, Fla.

Also in October 2020, QCraft.ai in Santa Clara, Calif., got seed funding as it develops simulation software for autonomous buses. Fortellix acquired Redwood City, Calif.-based Metaamoto, which provides simulation for ADAS, for an unspecified amount.

Drones get tailwinds in October 2020

Both unmanned aerial vehicles (UAVs) and drone countermeasures received $300 million in funding in October 2020. Workhorse Group Inc. in Loveland, Ohio, led with $200 million in financing for its electric vehicle and drone-delivery technology. It was the largest robotics transaction of the month.


Redondo Beach, Calif.-based drone defense startup Epirus got $57.3 million in Series C investment. Dedrone in San Francisco raised $12.1 million for its drone threat response system.

Gedera, Israel-based Tevel Aerobotics Technologies Ltd. received Series B funding of $20 million as it commercializes its AI-driven, fruit-picking drones.

Austin, Texas-based HUVRdata Inc., which analyzes drone inspection data for the energy industry, obtained $5 million in Series A. funding. Deutsche Telekom participated in the $4 million Series A+ investment round for vHive. The Herzliya, Israel-based company is also developing software for drones serving the energy industry.

Ware, a drone inventory firm in San Francisco, raised $2.5 million in seed funding. Further along the supply chain, Dublin, Ireland-based Manna raised an unspecified Series A for drone deliveries of food and pharmaceuticals.

In October 2020 drone acquisitions, Honeywell International picked up Ballard Power Systems Inc., a drone inspection provider in Southborough, Mass. AEVEX Aerospace acquired Geodetics, a drone navigation firm in San Diego, for an unspecified amount.

Healthcare robotics receive financing

Healthcare robotics companies raised more than $100 million in October 2020. Miami-based Neocis Inc., which is developing the Yomi robotic assistant for dental surgery, raised $72 million in Series D financing.


Shanghai-based rehabilitation exoskeleton maker Fourier Intelligence raised $15 million in Series C funding. Beijing-based orthopedic surgical robotics firm Jianjia Robots obtained $14.72 million in October 2020.

Yrobot, a wearable device provider in Cambridge, Mass., raised unspecified seed funding from Baidu Ventures.

Dublin, Ireland-based Medtronic PLC, which produces medical devices in addition to robotics and is thus beyond the scope of this report, was acquired by Ai Biomed Corp. Similarly, Chicago-based prosthetics provider Coapt received a $2.3 million grant from the U.S. Department of Defense.

Industrial automation slows but expected to rebound

Industrial automation is relatively mature, and the COVID-19 pandemic slowed global manufacturing, so fewer startups received funding in October 2020 in comparison with other sectors. Still, as the aforementioned Workhorse Group investment demonstrates, there are plenty of areas in factories and warehouses where automation can still be applied.

“Third-quarter revenues in all business areas were still dampened due to the impact of COVID-19, although a strong recovery in China and ongoing cost-mitigation efforts supported a strong underlying performance,” stated Björn Rosengren, CEO of ABB, in his company’s quarterly earnings call. “Robotics and Industrial Automation, on the other hand, are taking more time to recover.”

ABB acquired Ede, Netherlands-based delta robot maker Codian Robotics VB in October 2020.

Teradyne Inc., which owns collaborative robot leader Universal Robots A/S, mobile robot makers Mobile Industrial Robots ApS and AutoGuide Mobile Robots, and sensing and software provider Energid Technologies, reported that its industrial automation sales rebounded to 2019 levels in the third quarter of 2020 after a coronavirus-induced drop in the second quarter. Universal Robots‘ sales grew 23% from Q2 to Q3, it said.

Shenzhen, China-based Han’s Robot raised $24.3 million in Series A financing. Albany, Ore.-based legged robot maker Agility Robotics raised $20 million in Series A funding.


Also in October 2020, U.K.-based online grocer Ocado Group invested in Athens-based Myrmex Inc., which is developing mobile supply chain robots. Since then, Ocado has also acquired Haddington Dynamics and Kindred Systems.

Seegrid Corp. acquired Philadelphia-based Box Robotics Inc., which provides 3D lidar, high-definition maps, and deep learning for mobile robots.

Field robots harvest funding in October 2020

In addition to Tevel Aerobotics, VitiBot raised $12.9 million in October 2020. The Reims, France-based firm is developing robots for vineyards.


SwarmFarm Robotics in Gindie, Australia, obtained $3.22 million in Series A funding for its open platform. Boston-based Root AI raised $325,000 for automated indoor agriculture.

In addition to farming, Sea Machines Robotics Inc. raised $5 million in Series B funding. The Boston-based marine robotics company had raised $15 million in July.

BP Ventures participated in the $13 million Series A round of Farnborough, U.K.-based Blue Ocean Seismic Services Ltd. Paradise Cove, Calif.-based Kraken Robotics, which provides marine Robotics-as-a-Service (RaaS) to energy and military customers, raised $10.4 million.

Retail, service, consumer robots seek Halloween treats

It’s too soon to say what the retail and hospitality markets will look like after the pandemic, but robots are likely going to be part of the picture. At the same time, consumer robots still have a long way to go. Mumbai, India-based educational robot firm Miko raised $3.14 million.

Seattle-based pizza robot maker Picnic raised $3 million in venture funding in October 2020. Also in the kitchen, Toronto-based YPC Technologies raised $1.8 million in seed funding, with participation from Toyota AI Ventures.


Shenzhen, China-based hospitality robot maker Youdi Technology Co. raised an unspecified amount of Series B funding.

Coca-Cola unit Costa Coffee acquired Austin, Texas-based robotic barista company Briggo for an unspecified amount. Light Ray Holdings’ acquisition of Zimplistic could be considered the one failure of October 2020, as the Singapore-based maker of the Rotimatic flatbread machine had struggled in the consumer space.

Less glamorous but still necessary, sewer-cleaning robot maker Genrobotics Innovations Pvt. Ltd. in Thiruvananthapuram, India, raised $34,000.

Software, components round out October 2020 robotics deals

From motion control to artificial intelligence, last month’s final batch of transactions included key technologies for robotics. Palo Alto, Calif.-based Robust.AI, which has been developing a “cognitive engine” for robots, had a Series A round of $15 million.

Robust.AI founders

The founders of Robust AI, which is developing a cognitive platform for robots.

MOV.AI in Lisbon received $4 million in Series A funding as it builds an operating system for robot manufacturers and Robot Operating System (ROS) developers. Boston-based control software company Realtime Robotics Inc. raised $2 million through an equity sale, according to a filing with the U.S. Securities and Exchange Commission.

On the hardware side, actuation firm Artimus Robotics in Boulder, Colo., raised $594,000 in seed funding, and Bota Systems, a Zurich-based sensor and gripper maker, received $164,000 in seed funding in October 2020.

Applied Industrial Technologies acquired Marietta, Ga.-based Advanced Control Solutions, which makes controls and mobile and collaborative robot, for an unspecified amount.


Editors’ note: What defines robotics investments? The answer to this simple question is central in any attempt to quantify them with some degree of rigor. To make investment analyses consistent, repeatable, and valuable, it is critical to wring out as much subjectivity as possible during the evaluation process. This begins with a definition of terms and a description of assumptions.

Investors and investing
Investment should come from venture capital firms, corporate investment groups, angel investors, and other sources. Friends-and-family investments, government/non-governmental agency grants, and crowd-sourced funding are excluded.

Robotics and intelligent systems companies
Robotics companies must generate or expect to generate revenue from the production of robotics products (that sense, analyze, and act in the physical world), hardware or software subsystems and enabling technologies for robots, or services supporting robotics devices. For this analysis, autonomous vehicles (including technologies that support autonomous driving) and drones are considered robots, while 3D printers, CNC systems, and various types of “hard” automation are not.

Companies that are “robotic” in name only, or use the term “robot” to describe products and services that that do not enable or support devices acting in the physical world, are excluded. For example, this includes “software robots” and robotic process automation. Many firms have multiple locations in different countries. Company locations given in the analysis are based on the publicly listed headquarters in legal documents, press releases, etc.

Verification
Funding information is collected from a number of public and private sources. These include press releases from corporations and investment groups, corporate briefings, industry analysts, and association and industry publications, including PitchBook and Tracxn. In addition, information comes from sessions at conferences and seminars, as well as during private interviews with industry representatives, investors, and others. Unverifiable investments are excluded.

Eugene Demaitre, senior editor of Robotics Business ReviewAbout the author:

Eugene Demaitre is senior editor at The Robot Report and Robotics Business Review. Prior to working at WTWH Media, he was an editor at BNA (now part of Bloomberg), Computerworld, TechTarget, and EH Media. Demaitre has participated in robotics webcasts, podcasts, and conferences worldwide. He has a master’s from the George Washington University and lives in the Boston area.

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Delivery drone firm Volansi expands to VTOL development facility in Oregon https://www.therobotreport.com/drone-delivery-firm-volansi-expands-vtol-development-facility-oregon/ https://www.therobotreport.com/drone-delivery-firm-volansi-expands-vtol-development-facility-oregon/#comments Mon, 16 Nov 2020 14:00:42 +0000 https://www.therobotreport.com/?p=107284 VTOL drone delivery developer and service provider Volansi said it is expanding in Bend, Ore., to take advantage of the region's talent pool and aviation technology expertise and scale its production and operations.

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While many industry observers see regulatory approval as hurdle for commercial drone delivery, technological and business challenges also need to be solved at scale. Volansi Inc. today announced the opening of a new facility in the Bend, Ore., area to support its delivery drone development, testing, and production.

The Concord, Calif.-based company has developed vertical takeoff and landing (VTOL), middle-mile drone-delivery services. Volansi also said it provides on-demand aerial delivery services for time-critical shipments over long ranges. The company, which also has a location in Arizona, serves oil and gas, mining, defense, and medical applications, and it has ongoing operations in Africa, the Caribbean, and the U.S.

In September, Volansi raised $50 million in Series B funding, which it plans to use to expand its team and facilities, launch new projects, and scale current initiatives in emerging markets and the U.S. Last month, Volansi piloted the delivery of Merck medications in rural North Carolina.

Volansi develops delivery drone capabilities

Volansi develops, manufactures, and operates its own unmanned aerial vehicles (UAVs), including the VOLY C10 and VOLY M20 autonomous drones. The VOLY C10, the workhorse of Volansi’s UAV fleet, carries up to 10 lb. of cargo over 50 mi. The company’s ongoing delivery drone project in North Carolina demonstrates the VOLY C10’s hybrid eVTOL fixed-wing flight system, making it one of the only drone delivery services capable of transporting fragile, temperature-controlled vaccines.

The VOLY M20 is a dual-role aircraft with the ability to simultaneously carry up to 20 lb. of cargo, in addition to 10 lb. of sensor payloads. It has a 350-mi. range, a cruising speed of 75 mph, and more than eight hours of endurance for sensor operations, said Volansi.

Delivery drone firm Volansi expands to VTOL development facility in Oregon

VOLY M20 drone. Source: Volansi

Bend offers access to talent

The local talent pool was a major reason for Volansi to expand its delivery drone operations in Bend, Ore., according to executives.

“We have always applied a rapid, iterative approach more commonly used in robotics design or software development when innovating with our technology,” stated Hannan Parvizian, co-founder and CEO of Volansi. “With deep industrial roots, a rich talent pool, and mostly year-round good weather, the fast-growing Bend metro area was the obvious choice for co-locating the development, production, and testing of our aviation technology. We look forward to joining the community and making the Bend area our second home.”

“Central Oregon and the Pacific Northwest provide amazing access to great talent, a plethora of supply chain options, and an excellent operating environment,” said Mike Jackson, vice president of global operations at Volansi. “We feel the area is very well positioned to support both our growth potential and our pending production requirements.”

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ExynAero, ExynPak expand Exyn’s autonomous drone, sensing offerings https://www.therobotreport.com/exynaero-exynpak-expand-exyn-technologies-drone-sensing/ https://www.therobotreport.com/exynaero-exynpak-expand-exyn-technologies-drone-sensing/#respond Tue, 27 Oct 2020 16:00:41 +0000 https://www.therobotreport.com/?p=106990 Exyn Technologies said its new ExynAero drone sensor system can map industrial environments in real time without a human pilot.

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Increasing levels of autonomy are helping to make drones more useful for commercial use. Exyn Technologies, which has developed autonomous aerial robots for complex, GPS-denied industrial environments, today announced the ExynAero and ExynPak. The company said its new drone and sensor system expand its technology offerings for collecting data from challenging and previously unmappable environments.

Philadelphia-based Exyn spun out of the University of Pennsylvania’s General Robotics, Automation, Sensing & Perception (GRASP) Laboratory. The company said its full stack of autonomous systems serves mining, construction, logistics, and military applications.

ExynAero includes autonomy, agility, and accuracy

Exyn Technologies said the ExynAero is an upgrade from its previous A3R system. The drone is fully autonomous and can map environments including GPS-denied, human-inaccessible, industrial sites without a pilot. The enables users to keep their employees safe while maximizing beyond visual line-of-sight (BVLOS) data collection and communications, said the company.

The new technology builds on the company’s ExynAI software, which can mesh multiple data streams in real time. The ExynAero’s software can also automatically merge data from various sensors and platforms to build a robust map of an environment, even with multiple units running simultaneously, Exyn said.

The ExynAero includes a 270-degree view, providing detailed in-depth visuals of stopes in full HD color, bright lighting, and lidar to provide top acuity, shooting over 300,000 beams per second for highly accurate visualizations, said Exyn. The company added that ExynAero’s flight stack and agile navigation provide stability and robustness in tight spaces, and the system can easily transfer data to team members who can analyze it.

ExynAero

The ExynAero. Source: Exyn Technologies

“The ExynAero represents the future of data collection across a number of applications and industrial environments,” stated Nader Elm, CEO of Exyn Technologies. “The product is the first of its kind to offer true aerial autonomy. The ExynAero can fly itself in the most challenging and unknown environments, collect the data, and merge the streams with ExynAI on board. This allows for maximum data collection and a radical improvement in safety for workers around the world who are placed in difficult and sometimes potentially dangerous conditions.”

“We’re hoping with the launch of this product and the additional modalities offered by the ExynPak that our customers will be able to collect the data they need easily, regardless of limitations,” he added. “The benefits of this will lead to not only significantly greater worker safety, but also considerably improved productivity and efficiency.”

ExynPak offers portability

The ExynPak provides a new portable format that enables users to unstrap the autonomy features of the ExynAero and simply capture data with the built-in tools via other modalities — such as hand carry or vehicle mount — for situations where complete autonomy is not needed or practical.

ExynPak

ExynPak with handles. Source: Exyn Technologies

Exyn Technologies said ExynPak will allow it to apply its core technology to more use cases and environments involving existing infrastructure or transportation modes that don’t require an aerial or autonomous component. Exyn said it plans to continue to develop new products to help support mapping and data collection, regardless of format, with more products coming out in 2021.

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Kespry Perception Analytics uses Microsoft Azure for geospatial analysis of drone data https://www.therobotreport.com/kespry-perception-analytics-uses-microsoft-azure-drone-data-analysis/ https://www.therobotreport.com/kespry-perception-analytics-uses-microsoft-azure-drone-data-analysis/#respond Wed, 14 Oct 2020 13:00:29 +0000 https://www.therobotreport.com/?p=106845 Kespry said its Kespry Perception Analytics cloud-based system is designed for industries including chemicals, pulp and paper, energy, food and beverage, and ports.

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Aerial drones and robots can collect massive amounts of data, but that information is only useful if it can be analyzed and passed along to humans for effective decision making. Kespry Inc. today announced the availability of Kespry Perception Analytics. The company said its system is designed for industrial use cases requiring comprehensive analysis of complex visual data, including asset condition tracking and identifying anomalies.

Menlo Park, Calif.-based Kespry was founded in 2013. It offers automation and machine learning capabilities to help businesses organize photos, videos, and infrared footage to identify and manage issues with physical assets. The company said its capabilities are based on its experience in drone-based aerial intelligence serving more than 270 mining and aggregates companies across North America, Europe, and Australia, as well as some of the world’s largest insurers.

Kespry customers include Colas, Fluor, Grinnell Mutual, Lehigh Hanson/Heidelberg, Oldcastle, Shell, Titan America, XAP 360, and Zellstoff Celgar.

Kespry Perception Analytics designed to streamline inspections

Instead of manually reviewing multiple sources of visual and sensor-based data, Kespry Perception Analytics is designed to streamline the inspection process by creating a geotagged, historical repository for visual data. This enables teams to easily analyze multiple sources of data across assets, track trends over time, and perform proactive maintenance.

At the heart of Kespry Perception Analytics is a knowledge graph, said the company. It maps a company’s entire library of visual data, including media files and photogrammetric output, by types of physical assets, their specific geographic location, and the types and times of issues identified.

“Kespry Perception Analytics delivers unprecedented business insight and solves major problems for industrial companies that have struggled to get meaningful value from visual data in a timely manner,” stated George Mathew, CEO of Kespry. “It provides companies with a more complete view of the state of assets than just depending on telemetry data alone. It’s designed with a simple interface to help users intuitively navigate through complex analysis with ease.”

The platform provides a comprehensive toolset to ingest and index the data, according to Kespry, and it uses Microsoft’s Azure machine learning to generate insights on the data. Kespry Perception Analytics’ intuitive search and analytics capabilities enable reliability and maintenance teams to query data without any coding knowledge, claimed the company. The system offers interactive dashboards and data visualization tools to analyze the health of assets across an organization.

“Until recently, industrial companies have solely relied on telemetry and sensor-based data, in addition to manual visual inspections, when monitoring their assets,” Mathew told The Robot Report. “Kespry Perception Analytics [KPA] redefines how companies perform predictive maintenance by creating a holistic repository for visual data, such as digital photos, videos, thermal imaging, and ultrasound, allowing operations teams to better organize and analyze important components of their inspections.”

“KPA captures data from virtually any camera-based sensor, including cameras based on drones, as well as robot vision cameras. It captures the data in near-time and processes it on ingest, making it quickly available within the KPA application for analytics and insight,” he said. “Our platform seamlessly processes, tags, geospatially locates, and indexes visual sensor data via the most sophisticated AI and machine learning available in the enterprise cloud ecosystem.”

Kespry claims

Cloud-based software can aid insurers assess things such as hail damage to a roof. Source: Kespry

Kespry collaborates with Microsoft

Kespry said it collaborated with Microsoft Corp. to ensure that Kespry Perception Analytics meets the rigorous needs of complex industrial operations. The system vertically integrates as an ISV solution for the Microsoft Dynamics 365 and Power Platform.

Kespry Perception Analytics runs on the Microsoft Azure cloud computing platform, which provides customers with the ability to integrate, manage, and deploy Kespry Perception Analytics at scale across their global networks using established tools and frameworks, said the companies.

“Kespry Perception Analytics is an excellent example of a business solution that combines next-generation image and video analysis via the power of Microsoft Azure cloud and Azure AI.” said James Phillips, corporate vice president at Microsoft. “Kespry’s solution requires incredible speed and network availability to ensure it can deliver on its compute demands and have the resilience and availability necessary as a business-critical application.”

Kespry Perception Analytics

Source: Kespry

Uses for KPA

Chemical, energy, pulp and paper, food and beverage, and port facilities capture petabytes of inspection data from handheld and fixed cameras, drones and other robots, and thermal guns. This data can provide critical insights into asset conditions and efficiency. But reliability and maintenance teams waste valuable time organizing and searching inaccessible, unaggregated, and difficult-to-parse data across multiple users and systems, said Kespry. This makes it difficult to proactively detect problems that can lead to asset failures such as leaks and corrosion.

Mathew provided an example of how Kespry Perception Analytics can benefit inspection applications.

“Energy companies require constant inspections of key assets such as pipelines, tanks, and stacks to maximize health and performance for 24×7 operations,” he said. “Kespry Perception Analytics solves one of the most significant, yet demanding problems energy companies face today: proactively and efficiently analyzing key insights from terabytes of visual data captured daily, and correlating the requisite operational data to identify and resolve issues.

“Similar to large industrial companies, ports have a host of assets that they need to regularly maintain, including dock components; cranes; tank farms; and infrastructure such as roads, bridges, and ladders. In order to inspect these assets, members of their engineering, maintenance and tenant services teams collect visual data on a daily basis. However, once that data is collected, there is no good way to store and organize it,” Mathew added. “Kespry Perception Analytics help ports become much more advanced in this process, enabling operations teams to better organize the visual data they collect, track trends over time, and tie visual data to specific assets in specific locations.”

Early users have provided support and feedback, he said.

“We are currently in the midst of major deployments with a pulp and paper giant, as well as one of the biggest port facilities in the country,” said Mathew. “Both organizations have been incredibly enthusiastic at the potential for Kespry Perception Analytics and see the long-term value for mitigating issues that could later become incredibly costly and difficult to address. The value of KPA is resonating with asset health and reliability teams, as well as data analysts within these companies.”

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