Skip to main content

MDOT uses connected vehicle technology to clear snow and ice

Connected vehicle technology is helping Michigan Department of Transportation (MDOT) clear snow and ice from roadways faster, using GPS-based automatic vehicle location (AVL) devices on its winter road maintenance equipment. These systems report where each truck is, and they gather data from other sensors to report details like atmospheric conditions, camera images, and speed and salt application rates for each vehicle.
January 9, 2017 Read time: 2 mins

Connected vehicle technology is helping Michigan Department of Transportation (MDOT) clear snow and ice from roadways faster, using GPS-based automatic vehicle location (AVL) devices on its winter road maintenance equipment. These systems report where each truck is, and they gather data from other sensors to report details like atmospheric conditions, camera images, and speed and salt application rates for each vehicle.

MDOT feeds that information, plus additional road and weather data and forecasts, into its maintenance decision support system (MDSS), which it uses to better plan for winter storms. It's a powerful combination for managing ploughing and salting operations.

''Monitoring snowplough speeds and material application helps us apply efficient salting practices,'' said Melissa Howe, region support engineer for MDOT's Maintenance Field Services Section. ''Maintenance supervisors can also easily adjust shifts based on the timing of a storm so we have ploughs on the roads precisely when they're needed, adding people proactively rather than reactively.''

MDOT has installed AVL/GPS on all of its ploughs and some county road commissions are also using the technology. With multiple systems in use, MDOT and counties are collectively researching how to expand the deployment of this technology while coordinating and standardising its use.

MDOT says AVL and MDSS have helped reduce salt consumption, contributing to an estimated 2.2 percent increase in efficiency. MDOT spends about US$30 million on salt in an average year, so even modest reductions in salt use save a lot of money. In addition, MDOT operations and maintenance engineers have improved the system interface to show more detail and more accurate locations, and they expect even greater efficiencies as MDOT gains experience with the system.

With cost-savings and safety in mind, MDOT promotes a number of best practices to boost salt use efficiency during winter maintenance. The department is encouraging its drivers to drive slower when possible while applying salt so more stays on the road. MDOT is also investigating new application systems to keep the salt from bouncing out of driving lanes. Other '’sensible salting’' solutions include setting application guidelines for winter conditions, using weather stations to better target areas that will benefit most from salt, and pre-wetting the salt so it sticks to the road and starts working faster.

Related Content

  • Wavetronix radar-based traffic sensor cuts costs
    May 30, 2013
    While initial cost of radar based detection may be higher than that traditional loops, lower maintenance costs more than balance the books. Following successful field tests, the US city of Greenville, North Carolina, has recently agreed a new policy of phasing in Wavetronix traffic sensor technology’s radar-based SmartSensor Matrix system across its signalised traffic intersections. City traffic engineer Rik DiCesare expects the incremental implementation to deliver benefits to both the city’s taxpayers an
  • Cost Benefit: Utah traffic light scheme pays dividends
    March 15, 2019
    A traffic signal control scheme in Utah is being taken up by other US authorities. David Crawford finds out how the Beehive State is leading the way in DoT and driver savings Growing numbers of US state departments of transportation (DoTs) and their road users are gaining real financial benefits from an advanced approach to traffic signal monitoring recently developed in Utah. Central to the system is its use of automated traffic signal performance measures (ATSPM) technology, brought in to improve th
  • Big data analytics identifies congestion increases
    November 26, 2014
    Iteris has completed and published the Alameda County Transportation Commission (Alameda CTC) 2014 Level of Service Monitoring Report. The report was generated for speed-based congestion monitoring, utilising big data analytics in place of conventional in-field manual data collection for 205 miles of the 327 mile network. Use of big data analytics will be expanded in future monitoring cycles. Many agencies conduct congestion monitoring through manual data collection efforts. Agencies traditionally us
  • Broadband threat to GPS accuracy
    February 14, 2012
    A coalition of leading manufacturers, contractors and associations from various industries called the Transportation Construction Coalition (TCC) has sent an open letter to US Secretary for Transporation, Ray LaHood, expressing concerns over a major threat to GPS signal accuracy.