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

  • ITS World Congress Hall of Fame winners
    September 8, 2016
    The ITS World Congress 2016 Hall of Fame winners have been announced and will be inducted into the Hall of Fame at the 23rd ITS World Congress on Intelligent Transport Systems, 10-14 October, Melbourne, Australia. The Awards recognise individuals, industries and local governments striving to set the bar higher and enhance the end user experience. Local solutions often have wider applications, ensuring international transport, safety and technology improvements, enhancing liveability in cities and communitie
  • Inrix aids authorities in dealing with data
    August 18, 2015
    New traffic data products and services have been launched to aid transport and urban planners and business with detailed intelligence on journey patterns, reports Jon Masters. Manual travel surveys ought soon to become a thing of the past for transport planners and the business community. The technology now exists for getting sophisticated levels of traffic and trip data from connected vehicles. Cars and commercial fleets carrying a GPS device, or a mobile phone or smartphone are the sources of the informat
  • The Middle East takes lead in urban mobility
    November 24, 2017
    Ralf Baron, Thomas Kuruvilla, Morsi Berguiga, Michael Zintel, Joseph Salem and Mario Kerbage from Arthur D. Little explain why there is much to be learned from the Middle East about the rapid evolution of transport systems. The rapid urbanisation across the globe is leading to mobility challenges as cities struggle to ensure their populations can move around freely using both public and private transport. Solving these issues is critical to ensuring that cities thrive and attract the investment and
  • Ground-breaking neutral V2X platform for C-ITS
    June 7, 2021
    Monotch's TLEX can be used by multiple stakeholders across C-ITS ecosystem