Skip to main content

Kapsch to deliver 30 C-ITS devices for Australian connected vehicle pilot

Kapsch TrafficCom is to deliver 30 roadside co-operative ITS (C-ITS) devices over two years in support of a connected vehicle trial in Australia. This project, led by the Queensland Department of Transport and Main Roads, will seek to develop C-ITS technology to reduce road and pedestrian deaths in the Australian state. From late 2019 onwards, the roadside units will be located along a distributed roadside ITS station network in and around the city of Ipswich in Queensland. Around 500 public and fleet ve
December 11, 2018 Read time: 2 mins

Kapsch TrafficCom is to deliver 30 roadside co-operative ITS (C-ITS) devices over two years in support of a connected vehicle trial in Australia.

This project, led by the Queensland Department of Transport and Main Roads, will seek to develop C-ITS technology to reduce road and pedestrian deaths in the Australian state.

From late 2019 onwards, the roadside units will be located along a distributed roadside ITS station network in and around the city of Ipswich in Queensland. Around 500 public and fleet vehicles will be retrofitted with C-ITS technologies to assess the safety benefits as part of the Ipswich connected vehicle pilot.

Various vehicle to infrastructure (V2I) and vehicle to vehicle (V2V) safety applications will be tested. These include warnings for in-vehicle speed, emergency braking, red lights, turning for VRUs and road works.

Mark Bailey, Queensland minister for transport and main roads, says the initiative provides an opportunity for the Queensland government to show road users the safety-related features of co-operative, or connected vehicle technologies.

In October, the Australian government signed a memorandum of understanding with the US state of Michigan to develop vehicle and road systems to help improve road safety.

Related Content

  • October 26, 2017
    Applied Information’s app gets Marietta connected
    Must the benefits of connected vehicle technology wait for a generation of new or retrofitted vehicles? The US city of Marietta is about to find out. Can connected vehicle functionality be delivered via a smartphone? Well, in Marietta, Georgia, they are about to answer that question. The city is testing a smartphone app which warns motorists of nearby cyclists and pedestrians, approaching first responders, wrong-way driving, entering active school zones and much more.
  • January 13, 2017
    Australia trials shortened cost benefit evaluation
    A shortened and tailored cost benefit assessment is helping show the worth of C-ITS in Australia. An Australian ‘rapid cost-benefit assessment’ method, introduced to help prepare the ground for co-operative ITS (C-ITS) deployment and showcased at the ITS World Congress in Melbourne, has generated encouraging results.
  • October 22, 2015
    LowCVP calls on truck operators and others to focus on cutting truck emissions
    To coincide with its participation in the new Freight in the City event on 27 October, the LowCVP is calling on fleet operators, local authorities and others to join forces in building the market for heavy goods vehicles which cut carbon, reduce emissions and lower fuel costs. In earlier research, the LowCVP has identified three main opportunities for cutting emissions from HGVs which pointed to the need for specific interventions: independent testing to validate the effectiveness of retrofit technology
  • May 1, 2012
    Connected Vehicle Technology Demonstration
    Connected Vehicle Cooperative Safety Systems use 5.9 GHz Dedicated Short Range Communications (DSRC) to enable vehicle active safety systems which may help drivers avoid crashes. The United States Department of Transportation (US DOT) has partnered with the Crash Avoidance Metrics Partnership (CAMP) Vehicle Safety Communications 3 (VSC3) Consortium to research, develop and test the technologies that form the framework for these systems.