Skip to main content

Creating safer roads with vehicle communication

Accurate, timely information which eliminates the need to brake quickly when approaching a work zone or other road hazard could prevent crashes and save lives, according to research by the University of Minnesota. Thanks to research by the University of Minnesota, this vision is closer than ever to reality. “In the past fifty years we’ve made great strides in reducing traffic fatalities with technologies that save lives in crashes, like airbags and seat belts,” says M. Imram Hayee, electrical and computer e
March 26, 2013 Read time: 3 mins
Accurate, timely information which eliminates the need to brake quickly when approaching a work zone or other road hazard could prevent crashes and save lives, according to research by the 584 University of Minnesota.

Thanks to research by the University of Minnesota, this vision is closer than ever to reality. “In the past fifty years we’ve made great strides in reducing traffic fatalities with technologies that save lives in crashes, like airbags and seat belts,” says M. Imram Hayee, electrical and computer engineering professor at the U of M Duluth. “The next wave of lifesaving technologies is what we’re focusing on with this research, technologies that prevent crashes from occurring in the first place.”

Electrical and computer engineering professor M. Imram Hayee and research assistant Umair Ibrahim examined how dedicated short-range communication (DSRC) can allow vehicles to communicate critical safety information about work zone operations to both each other and to roadway infrastructure such as portable changeable message signs.

Researchers developed and successfully field-tested a hybrid traffic information system that allows the traffic data being transmitted by vehicles with DSRC to be received seamlessly and securely by portable changeable message signs placed along the roadside.

“We designed a fully portable traffic information system that can be placed on any road to monitor the congestion build-up around a work zone or display advisory messages to drivers,” Hayee explains.

This information can also be communicated to other vehicles in the vicinity and to permanent roadway infrastructure equipped with DSRC technology. Further analysis indicated that just twenty to thirty-five per cent of vehicles need to be equipped with DSRC for the system to work reliably.

Currently, a diverse group of stakeholders, including vehicle manufacturers, highway safety groups, and government organisations, is working on developing and researching DSRC technology for US vehicles. However, even after adoption of DSRC begins, it will be a long time before it is available in most vehicles, which is why this research is important.

“If we want to reap the maximum safety benefits in the early stages of DSRC adoption, we’ll need an effective way to get the valuable information being transmitted by the DSRC-equipped vehicles to drivers that don’t yet have access to this technology,” Hayee says.

For more information on companies in this article

Related Content

  • ITS homes in on cycling safety
    April 9, 2014
    A new generation of ITS equipment is helping road authorities get to grips with cycle safety – and not a moment too soon as Colin Sowman discovers. Cyclists - remember them? Apparently not. At least not according to the OECD 2013 report Cycling, Health and Safety which contains the statement: ‘Cyclists are often forgotten in the design of the road traffic system’. Looking through the statistics that exist (each country appears to compile them differently) it is not difficult to see how such a conclusion cou
  • Kapsch says US purchase will have world-wide impact
    June 3, 2014
    Peter Ummenhofer, head of the ITS Business Unit at Kapsch TrafficCom, discusses what the recent acquisition of US ATMS specialist Transdyn will mean for the company and the ITS sector. Even a brief perusal of Kapsch’s portfolio lends credence to the company’s assertion that it is more than ‘just a tolling systems and services supplier’. Over the past few years, the company has added road safety enforcement to its offering with significant commercial vehicle operations capabilities, including weigh in motion
  • Aimsun online modelling tool for Interstate 15
    June 14, 2016
    The TSS (Transport Simulation Systems) team is using ITS America 2016 San Jose to showcase the latest developments to the Sandag (San Diego Association of Governments) integrated corridor management system on Interstate 15 in San Diego. Fresh from picking up yet another award last month (the California Transportation Foundation award for Operational Efficiency Program), this pioneering ICM project centres around a decision support system for which TSS provides the Aimsun Online modelling tool. Thanks in
  • Transmax trials emergency vehicle ‘green wave’
    December 6, 2013
    Existing equipment used in Australian emergency vehicle ‘green wave’ trial. Despite the lights and sirens, accidents between the motoring public and emergency vehicles on their way to/from the scene of an incident are relatively frequent. Figures from various sources indicate that road accidents are the second most frequent cause of death for on-duty fire fighter fatalities and that more than 90% of ambulance and fire engine accidents occur when the lights are on and the sirens wailing. Other studies indica