Skip to main content

PB designing infrastructure for connected vehicle project

Parsons Brinckerhoff (PB) has been selected to design and supervise deployment of technology infrastructure for a US Department of Transportation (US DoT) pilot programme to study the potential of operating connected vehicles on the streets and highways of Ann Arbor, Michigan. Called the Connected Vehicle Safety Pilot Model Deployment project, the $15 million research effort is being undertaken by the University of Michigan Transportation Research Institute (UMTRI) and its partners on behalf of the US DoT.
April 24, 2012 Read time: 2 mins
2693 Parsons Brinckerhoff (PB) has been selected to design and supervise deployment of technology infrastructure for a 2364 US Department of Transportation (US DoT) pilot programme to study the potential of operating connected vehicles on the streets and highways of Ann Arbor, Michigan.

Called the Connected Vehicle Safety Pilot Model Deployment project, the $15 million research effort is being undertaken by the 5186 University of Michigan Transportation Research Institute (UMTRI) and its partners on behalf of the US DoT. The programme will deploy connected vehicle technologies in Ann Arbor and data from the model deployment will be used to evaluate the potential for this technology to revolutionise automobile safety.

The advanced technology will be tested in a year-long study, which will involve the installation of wireless devices in up to 3,000 vehicles, to allow communication among the vehicles, and between the vehicles and the surrounding roadside equipment. During the deployment US DoT will evaluate the effectiveness of connected vehicle technology to prevent crashes in an everyday environment. Connected vehicle communication is based on Dedicated Short Range Communications (DSRC).

PB’s role will be to oversee  the infrastructure elements of the project, ensuring that all 29 roadside equipment installations are planned, engineered, procured, installed, integrated, and remain operational according to an extremely aggressive schedule.

Infrastructure will include roadside radio transmitter equipment at 21 signalised intersections, three curve locations, and five freeway sites, a robust communications backhaul network using both wireless and fibre, and facilities to process data and to showcase the system. Infrastructure also includes the replacement of signal controllers and specialised converters along two major corridors that will broadcast signal phase and timing data to vehicles via the DSRC network.

At the conclusion of the model deployment test, Parsons Brinckerhoff will assist the US DoT and UMTRI in any follow-up experiments and/or decommissioning of the roadside equipment.  The project is scheduled for completion in December 2013.

For more information on companies in this article

Related Content

  • Connected and autonomous mobility: a manifesto for change
    May 24, 2021
    The International Road Federation (IRF), based in Geneva, Switzerland has released the “Connected and Autonomous Mobility Manifesto”. This aims to provide food for thought on how to proactively prepare for the mobility revolution that connected and autonomous vehicles (CAV) will bring to the mobility and transport sector
  • India pushing ahead with infrastructure projects
    July 4, 2012
    Despite the economic downturn, India looks to be pressing ahead with its major infrastructure projects to further boost its incredible growth. Patrick Smith reports India, which like most countries has been affected by the current economic climate, although not to the same extent, is pressing ahead with its ambitious highway construction plans. Each week new projects are completed, started or awarded as the nation seeks to improve its transportation requirements. These are needed to meet the aspirations of
  • NTEP cert for Intercomp’s TS30
    September 22, 2021
    Intercomp reports that its TS30 CPU with a touchscreen indicator is now NTEP Class III/IIIL certified for use in static wheel-load weighing