Skip to main content

TRC launches smart mobility advanced research and test centre

The US state of Ohio and the Ohio State University are funding the US$45 million Phase 1 expansion of the Transportation Research Center's (TRC) new 540-acre SMART (Smart Mobility Advanced Research and Test) Center. To to be built within the 4,500 acres of the TRC’s independent automotive testing facility and proving grounds, SMART aims to be a hub for testing of automated and autonomous vehicles, designed to enable car manufacturers and suppliers to expand their testing. Phase 1 of the expansion will in
January 27, 2017 Read time: 2 mins
The US state of Ohio and the Ohio State University are funding the US$45 million Phase 1 expansion of the Transportation Research Center's (TRC) new 540-acre SMART (Smart Mobility Advanced Research and Test) Center. To to be built within the 4,500 acres of the TRC’s independent automotive testing facility and proving grounds, SMART aims to be a hub for testing of automated and autonomous vehicles, designed to enable car manufacturers and suppliers to expand their testing.

Phase 1 of the expansion will include a flexible platform and infrastructure; a high-speed intersection; a flexible test platform; an urban network of intersections, roundabouts, traffic signals; a rural network including wooded roads, neighbourhood network and a SMART Center support building.

TRC has been testing different types of vehicles and components on its 4,500-acre facility for more than 40 years, including testing automated and autonomous vehicles over the last two decades.  It provides a convenient location to safely test new technologies before their use on city streets and highways in support of Columbus's $140 million 324 US Department of Transportation (USDOT) Smart City project.

Funding efforts are underway for Phases 2 and 3 of the. Phase 2 will focus on the world's first indoor test facility, which will enable rigorous testing of highly automated vehicles in severe weather conditions.  Phase 3 will include a six-lane high-speed highway, with on and off ramps and underpasses, to support the testing of vehicle swarming and truck platooning.

For more information on companies in this article

Related Content

  • Intersection management, cooperative infrastructures - what next?
    February 1, 2012
    What do recent vehicle recalls mean for future cooperative infrastructures? Anthony Smith takes a look. As ITS industry stakeholders converge on Amsterdam for the 2010 Cooperative Mobility Showcase, an unprecedentedly wide range of technologies will be on display demonstrating what might be achievable in the future from innovations based on Vehicle-to-Vehicle (V2V) and Vehicle-to-Infrastructure (V2I) communications.
  • C/AVs could mean cheaper roads
    October 28, 2019
    The safety benefits of C/AVs have long been promoted – but research suggests they should also contribute to cheaper roads. David Crawford investigates the potential benefits in infrastructure costs Building narrower freeway lanes to accommodate the enhanced route-tracking capabilities of connected and autonomous vehicles (C/AVs), running in platoon conditions, could result in cost savings of £0.5 million (€0.56 million or US$6.5 million) for every km of road length built. Such benefits could be secur
  • Downtown Chattanooga gets smarter
    January 10, 2023
    Seoul Robotics will deliver 86 new smart city intersections in Tennessee city
  • HDR predicts an adaptable and flexible future for roadways
    December 19, 2016
    HDR consultants, Brian Swindell and Bernie Arseanea, consider managed lanes’ untapped potential. It is no surprise that corridor planning continues to challenge agencies and owners as demand continues to surpass roadway capacity.