Skip to main content

University develops rail crossing safety technology

Technology developed by Melbourne’s La Trobe University’s Centre for Technology Infusion that aims to reduce or even eliminate accidents at railway level crossings is to be trialled by the Queensland government as part of a $2 million commitment to address safety at rail crossings. The system uses GPS and dedicated short range communications (DSRC) wireless technology to establish a wireless connection between trains and vehicles approaching a railway crossing. The system is designed to detect the possibili
June 14, 2013 Read time: 2 mins
Technology developed by Melbourne’s La Trobe University’s Centre for Technology Infusion that aims to reduce or even eliminate accidents at railway level crossings is to be trialled by the Queensland government as part of a $2 million commitment to address safety at rail crossings.

The system uses GPS and dedicated short range communications (DSRC) wireless technology to establish a wireless connection between trains and vehicles approaching a railway crossing. The system is designed to detect the possibility of a collision and alert the driver with in-car audio-visual alerts that escalate in volume and intensity as the train gets closer to the crossing.

Director of the Centre for Technology Infusion, Professor Jack Singh, says that the technology underwent a limited trial in Melbourne last year, with eight trains involved over six weeks.

The Queensland Government’s trial will involve a larger number of trains, as well as heavy and commercial vehicles, over a six-month period.

“The project will greatly benefit driving safety in Australia. As a leading Australian technology and underpinned by Australian expertise, there is the added benefit of export potential,” said Professor McGaw of the Faculty of Science, Technology and Engineering.

With around 9,500 level crossings on Australian roads, technology that can alert drivers to approaching trains is of considerable benefit at those crossings which have no flashing lights or boom barriers – approximately two thirds of all level crossings in Australia.

Professor Jack Singh explained the benefits of the technology extended well beyond improving level crossing safety. “Collision warning systems including Cooperative Intelligent Transport Systems technology have been hailed by the motor vehicle industry as the next area of major road safety innovation, following in the footsteps of seat belts, airbags and ABS systems to save lives on the roads,” he said.

Related Content

  • Mobileye watches over drivers
    February 29, 2012
    Mobileye's new C2-170, based on the company's vehicle detection and lane detection technologies, can be installed in all types of vehicles. The system consists of a high visibility display unit, EyeWatch1; an audio alert buzzer and a vehicle screen-mounted visual sensor unit.
  • AECOM seatbelt and phone use trial expanded
    March 8, 2024
    More police forces in the UK are joining the National Highways’ trial of safety cameras that automatically detect motorists breaking seatbelt and mobile phone use laws.
  • AnyWay, De La Salle University to collaborate
    March 22, 2024
    Zeev Halber, Anyway chief executive, signed an agreement with the university’s Gokongwei College of Engineering to collaborate on research on climate resilient transportation infrastructure.
  • Stronger crash barriers may be needed for heavier trucks
    January 4, 2013
    The European Road Federation (ERF) has voiced its concern that roadside barriers in Europe may have to be upgraded According to the ERF, the recent decision of the European Commission to allow cross-border movement of longer and heavier trucks, it is keen to raise awareness of the important implications such a move may have for road barriers. ‘Road safety barriers are designed and tested according to the maximum weight of vehicles circulating on Europe’s roads. The current European Norm (EN 1317) allows for