Skip to main content

U-M offers open-access automated cars to advance driverless research

The University of Michigan (U-M) is offering use of its new research vehicles as test beds for academic and industry researchers to test self-driving and connected vehicle technologies at its proving ground. These open connected and automated research vehicles, or open CAVs, are equipped with sensors including radar, lidar and cameras, among other features and will be able to link to a robot operating system. An open development platform for connected vehicle communications will be added later. The op
November 22, 2016 Read time: 3 mins
The University of Michigan (U-M) is offering use of its new research vehicles as test beds for academic and industry researchers to test self-driving and connected vehicle technologies at its proving ground.

These open connected and automated research vehicles, or open CAVs, are equipped with sensors including radar, lidar and cameras, among other features and will be able to link to a robot operating system. An open development platform for connected vehicle communications will be added later.

The open CAVs are based at Mcity, U-M's simulated urban and suburban environment for testing automated and connected vehicles. While other institutions may offer similar research vehicles, U-M is the only one that also operates a high-tech, real-world testing facility. While auto companies are making key advances in autonomous vehicle development, they are doing so on proprietary systems.

Researchers and technology developers outside the auto companies with ideas for improving components or system controls have no way to assess whether they'll work in the real world. Students have limited options for studying connected and automated systems.

By providing a platform for faculty, students, industry partners and startups to test connected and automated vehicle technologies, U-M believes open CAVs will break down technology barriers and speed up innovation.

The vehicles are being made available by U-M’s Mobility Transformation Center. MTC, which operates Mcity and include a Lincoln MKZ sedan, powered by PolySync's autonomy platform that provides the foundation for rapid driverless vehicle development. Two Kia Soul compact crossovers, equipped with a new PolySync Open Source Car Control kit that enables complete ‘drive by-wire’ control, will join the Lincoln.

MTC will add dedicated short-range communications capabilities to the vehicles to support the intersection of connected and automated vehicle control and allow development of connected vehicle applications. With such capabilities, vehicles can anonymously and securely ‘talk’ to each other via wireless communications similar to wi-fi to improve safety.

The combination will be "transformational," said Carrie Morton, deputy director of MTC, a public-private partnership that involves more than 60 industry partners.

"By providing a platform for faculty, students, industry partners and startups to test connected and automated vehicle technologies, open CAVs will break down technology barriers and dramatically speed up innovation," Morton said. "We're democratising access to automated vehicle technology for research and education."

From a research perspective, the open CAVs are completely adaptable, said MTC director Huei Peng, the Roger L. McCarthy Professor of Mechanical Engineering. "Researchers can bring in their own hardware—swap out any sensor they'd like. Or they can create advanced controls to take advantage of various sensor technologies already on the vehicles. And they have the ability to explore how it works in a real mobility system at Mcity."

Related Content

  • Driverless trucks now making FedEx deliveries
    September 28, 2021
    Commercial pilot in Texas sees vehicles with safety driver travel between Dallas and Houston
  • Idris paves the way for loop based speed enforcement
    February 1, 2012
    With the Idris system now validated as a speed verification tool, the way is open for loops to be used in more complex enforcement applications. Diamond Consulting Services (DCS), developer of the Idris inductive loop-based vehicle detection and classification system, has recently successfully conducted validation trials which, the company says, open the way for Idris to be used for speed verification and loop-based sensors to be used for more complex applications such as speed-on-green and differential spe
  • GATEway project announces the next phase of driverless pod trials
    August 8, 2017
    The UK GATEway project is soon to launch its open public trial of driverless pods, which will provide first and last mile transportation around the Greenwich peninsula by connecting important transport hubs with business, leisure and residential locations. Commencing in the autumn, Fusion Processing will provide sensing and control equipment on the brand new pods that are being built by Westfield Sportscars. The pods are based on the original Heathrow Airport platform pod design and have been updated for u
  • Digital Transformation is the way to comprehensive transportation 
    March 31, 2021
    Transportation worldwide needs to keep up with a variety of challenges: Frederic Giron of Forrester Consulting explains how digital technologies will be the key to making the necessary changes...