Skip to main content

Estimating winter road recovery time with traffic data

In Minnesota, US, the most common measure for snow management performance is the time it takes to completely clear a roadway after a snow event ends. Currently, the Minnesota Department of Transportation (MnDOT) relies on visual inspections by its field crews to estimate this bare pavement recovery time. To help MnDOT more accurately and reliably estimate the performance of its snow management activities, researchers from the University of Minnesota Duluth (UMD) have developed a prototype process that uses
February 15, 2013 Read time: 3 mins
In Minnesota, US, the most common measure for snow management performance is the time it takes to completely clear a roadway after a snow event ends. Currently, the 2103 Minnesota Department of Transportation (MnDOT) relies on visual inspections by its field crews to estimate this bare pavement recovery time.

To help MnDOT more accurately and reliably estimate the performance of its snow management activities, researchers from the University of Minnesota Duluth (UMD) have developed a prototype process that uses traffic data to help determine the roadway recovery time.

The process uses data on traffic speed, flow, and density collected by loop detectors in the twin cities metro area to estimate the point at which traffic patterns return to normal, an indicator that the roadway surface has recovered.

 The project, led by UMD civil engineering professor Eil Kwon and sponsored by MnDOT, began with an evaluation of common traffic patterns during a snow event. Findings indicate that drivers travel below the speed limit during a snow event until the roadway has recovered enough to comfortably increase speed to normal levels.

The team also identified two common speed recovery patterns following a snow event. In the first pattern, speed recovery is affected only by road condition, meaning that traffic gradually returns to free-flow conditions as the road is cleared. In the second, recovery is affected by both road condition and traffic flow. In this case, speed may not reach the posted limit even with a completely clear roadway because of normal heavy traffic conditions, during rush hour for example.

For each of the two patterns, the researchers developed an automatic process that identifies specific points at which traffic speed changes during winter maintenance activities, indicating changes in the condition of the road surface. The last significant change before speed returns to normal is defined as the “road condition recovered” point.

To test the prototype process, the researchers used data from two snow-removal routes collected during the 2011–2012 season in the twin cities. Results from four different snow events show that the process was able to successfully identify speed changes and estimate road condition recovery points.

In the second phase of the project, currently under way, the researchers are refining the prototype so it can more accurately identify traffic flow recovery patterns under various conditions.

For more information on companies in this article

Related Content

  • Atlanta deploys Bluetooth-based DMS to help improve travel times
    May 10, 2017
    The Cobb County Department of Transportation (CCDOT) in Georgia, USA, has activated six full-colour dynamic message signs (DMS) in the metropolitan Atlanta area in a bid to improve travel times and enable motorists to choose less-congested routes. The LED signs have been installed on Cobb Parkway, South Marietta Parkway, Roswell Road and Spring Road to provide travel time information for common destinations and indicate the congestion level related to specific routes in real time. Travel times on I-75 and C
  • Kistler bridges health data gap
    May 14, 2025
    Cloud-based software platform completes structural health monitoring package
  • Transportation hub the centre of sustainable urban development
    November 21, 2012
    A marriage of transit, technology and culture is taking shape in Minneapolis, with ITS systems vital to hopes for a sustainable development centred on a hub of public transportation. Construction started in July this year on ‘The Interchange’ – a station in the Midwest US city of Minneapolis claimed as the most spectacular expression yet of the fast-spreading North American concept of transit-oriented development (TOD). Due for completion in 2014, the Interchange is designed as a multi-modal public transpor
  • Communications for cooperative infrastructures and safety
    February 2, 2012
    Scott Andrews of Cogenia Partners, LLC details the findings of the VII Proof Of Concept work carried out to verify the effectiveness of 5.9GHz-based communication for future US cooperative infrastructures