Skip to main content

Modelling could reduce traffic mayhem

A mathematical model that could significantly reduce traffic congestion by combining data from existing infrastructure, remote sensors, mobile devices and their communication systems has been developed by a research team from Australia’s Swinburne University of Technology. Swinburne‘s Congestion Breaker project utilises intelligent transport systems (ITS), a field of research that combines information and data from a range of sources for effective traffic control.
May 6, 2016 Read time: 2 mins

A mathematical model that could significantly reduce traffic congestion by combining data from existing infrastructure, remote sensors, mobile devices and their communication systems has been developed by a research team from Australia’s 5192 Swinburne University of Technology.

Swinburne‘s Congestion Breaker project utilises intelligent transport systems (ITS), a field of research that combines information and data from a range of sources for effective traffic control.

Led by Professor Hai L. Vu and developed in collaboration with 4728 VicRoads, the government body responsible for road management, through an Australian Research Council (ARC) Future Fellowships grant, the Congestion Breaker project has developed a mathematical approach that uses limited and incomplete data from existing operational traffic management systems to build a predictive control framework to minimise congestion.

The model optimises the traffic flows over a finite period, taking into account the short-term demand and traffic dynamic within links of the network. The resulting algorithm explicitly considers any spillback due to a queue built-up and travel time on the road between intersections and is capable of producing systems which would reduce congestion significantly.

Further innovative distributed control mechanism created in this project is inspired by research developed for packet scheduling in wireless networks. It can handle a large network containing thousands of sensors and actuators in real time.

The outcome is a comprehensive traffic management framework with computational flexibility accurate enough to reflect real urban traffic networks. It produces a scalable algorithm that can be integrated with current operating traffic management systems to reduce congestion and make better use of the existing road network infrastructure

“Our novelty is in developing an integrated traffic control scheme that combines linear model predictive control with route guidance to manage urban traffic flows, and making it scalable for large networks,” says Vu.

The researchers say the model has potential industry impact as a state-of-the-art, integrated, efficient traffic network management system. It’s a smart, scalable and easily integrated solution.

“Similar pilot projects can be developed for many other cities around the world,” says Vu. “And there are many possibilities for commercial applications in Australia and overseas in terms of smart mobility, sustainable cities for growing populations, and its concentration in big cities.”

For more information on companies in this article

Related Content

  • Vehicle manufacturers and local authorities seek satnav solutions
    December 5, 2013
    The increasing capability of satellite navigation is helping vehicle manufacturers and local authorities as well as individual drivers and fleets. In comparison to the physical ITS infrastructure in towns and cities and on motorways and highways, satellite navigation (satnav) systems have come a long way in a short time. Many (if not the majority) individual drivers and fleets use or have access to a satnav and now the vehicle manufacturers and even local authorities are beginning to utilise satnav derived
  • ITS Australia welcomes APC and ACCC statements on ITS
    August 13, 2014
    Recent statements by the Australian Productivity Commission and the Australian Competition and Consumer Commission encouraging the exploration of intelligent transport systems (ITS) technologies to tackle transport challenges have been warmly welcomed by ITS Australia.
  • Car parking and parked cars need not be a technological black hole
    March 19, 2015
    David Crawford mines the potential of joined-up parking. Drivers conventionally see parking as an isolated, often frustrating, action; but collectively their attempts to find a space impact hugely on traffic flows. But new analyses of parking events look set to deliver real benefits to motorists and cities alike. Initiatives getting under way around the world are highlighting the advantages of connecting up parking events and – eventually - parked cars. The hoped-for results include not only enhanced urban
  • Telensa lights up Hertfordshire
    November 27, 2014
    More than 12,600 street lights on Hertfordshire’s A-roads are being upgraded to LED lighting using Telensa’s PLANet street light central management system (CMS), which will allow the lights to be monitored from a central point. This will reduce inspection costs and make it easier to spot and repair any faults. The system will also allow lighting levels on the A-roads to be reduced during the night, rather than turning lights off completely. Once the new lights are installed, light levels will be reduced