Skip to main content

Smart signal software ‘has potential for ICM’

Software developed by researchers from the University of Minnesota for the Smart (Systematic Monitoring of Arterial Road and Traffic Signals) signal system automatically collects and processes data from traffic signal controllers at multiple intersections. It then creates performance measures, including information on the times and locations congestion occurs on a roadway. A new version of the software has been deployed at more than fifty intersections managed by the Minnesota Department of Transportatio
September 26, 2013 Read time: 2 mins
Software developed by researchers from the 584 University of Minnesota for the Smart (Systematic Monitoring of Arterial Road and Traffic Signals) signal system automatically collects and processes data from traffic signal controllers at multiple intersections. It then creates performance measures, including information on the times and locations congestion occurs on a roadway.

A new version of the software has been deployed at more than fifty intersections managed by the 2103 Minnesota Department of Transportation (MnDOT), enabling Smart signal to retrieve traffic data direct from signal controllers without any additional hardware instrumentation, reducing both the time and cost associated with implementation.

Researchers are now turning their attention to investigations into how Smart signal could be used as part of an integrated corridor management (ICM) system.

The proposed ICM system would use the performance measures generated by the system to diagnose incidents on signalised arterials and propose new signal control strategies that could be deployed in real time to mitigate traffic congestion.

The system also aims to reduce overall network congestion by using the available capacity of parallel routes, for example, by rerouting traffic from a freeway to a parallel signalised arterial during times of peak traffic congestion or when a crash occurs. In this case, Smart signal could help identify and predict the effects of rerouting travellers to the arterial and then automatically adjust signal timing to compensate for the increased traffic.

The study tested the proposed ICM system using a traffic simulation and results have shown that the system significantly reduces network congestion; the average delay and number of stops per vehicle was reduced and average vehicle speed increased.

For more information on companies in this article

Related Content

  • 'Talking cars' could save lives, study says
    November 26, 2020
    ITS Australia-led research suggests curve warnings on roads would help drivers
  • Statistical improvement for short-term travel time predictions
    June 2, 2014
    Researchers at Imperial College in London have developed a generic three-stage short-term travel prediction model that promises to give greater accuracy under both normal and abnormal conditions. As travellers do not like the randomness of non-recurrent traffic congestion and delays, it is particularly useful for network managers to know how the ongoing traffic situation will develop when an atypical event occurs.
  • Two seconds – the difference between life and death
    October 17, 2016
    Professor Donald Fisher has spent 15 years identifying factors that increase the crash risk of novice and older drivers. His findings highlight the difference between living and dying, Colin Sowman reports.
  • Automatic signal control to prevent emergency vehicle collisions?
    March 14, 2012
    Field trials under way in Arizona promise eradication of accidents between emergency vehicles at intersections – as part of a national focus on ‘intelligent signal’ infrastructure. Collisions between police cars, ambulances and fire crews as they reach intersections at the same time, with equal priority given by all signals set on red, are as serious as they sound absurd. For emergency teams and those in need of their help, the consequences are dire. The solution could come from application of connected veh