Skip to main content

Arizona DOT to test prototype wrong-way vehicle detection system

After a comprehensive study of wrong-way driving crashes on state highways and how technology may help reduce the threat, the Arizona Department of Transportation (ADOT) is planning a prototype project to use existing highway sensors to detect wrong-way vehicles and alert authorities and other motorists. ADOT director John Halikowski said the study sets the stage for the agency to develop and test a unique and innovative system to detect and track wrong-way drivers, improving opportunities for law enforceme
November 25, 2015 Read time: 3 mins

After a comprehensive study of wrong-way driving crashes on state highways and how technology may help reduce the threat, the 6576 Arizona Department of Transportation (ADOT) is planning a prototype project to use existing highway sensors to detect wrong-way vehicles and alert authorities and other motorists.

ADOT director John Halikowski said the study sets the stage for the agency to develop and test a unique and innovative system to detect and track wrong-way drivers, improving opportunities for law enforcement officers to respond.

“While there are tremendous challenges in trying to prevent often-impaired drivers from entering a freeway in the wrong direction, we’re looking at a unique system to detect these vehicles quickly and warn Arizona state troopers, ADOT and other drivers,” Halikowski said.

ADOT’s study, which started in January, helped ADOT identify Interstate 17 in the Phoenix area as the best place to establish a prototype system. Initially planning to use a three to four mile stretch of the interstate, the agency will determine an exact location for the test system as it is developed in the coming year.

The prototype system would enhance in-road freeway sensors that now detect traffic travelling in the right direction to also track vehicles going the wrong way. Such detections would alert ADOT’s Traffic Operations Center and the Department of Public Safety to the location of a wrong-way vehicle.

“We believe this will be a first-of-its kind system featuring the use of our in-pavement traffic sensors to track wrong-way vehicles,” Halikowski said.

The system also would include separate wrong-way vehicle detectors on freeway on-ramps within the test area, as well as technology to quickly post warnings on overhead message boards for drivers going the right way. Existing freeway on-ramp traffic signals also would display a solid red light to hold traffic from entering the freeway when a wrong-way vehicle is detected.

A key goal of a prototype system is significantly improving alerts for law enforcement, including the Arizona Department of Public Safety, compared to relying on information relayed by 911 callers.

ADOT’s study also pointed to a societal problem that no technology can address: the role of impaired driving in wrong-way crashes. Two out of three wrong-way crashes on Arizona highways from 2004 to 2014 involved impaired drivers.

"There is no 100 percent solution for wrong-way driving, especially when impaired drivers are involved," said DPS director Colonel Frank Milstead. "But if technology can be used to quickly notify our state troopers of a wrong-way driver, we can work to reduce the risk of a tragedy."

Related Content

  • June 26, 2017
    High tech approach to improve safety on New Zealand’s state highway 1
    A new high tech warning system, which will help to improve road safety, has been installed on State Highway 1 in New Zealand. The Rural Intersection Active Warning System at the turnoff to Moeraki Boulders is now operational and the variable speed limit is now legally enforceable.
  • December 2, 2013
    Auto safety initiative seeks to reduce driver errors
    A push by the US National Highway Traffic Safety Administration to use technology to reduce traffic fatalities aims to keep drunk drivers off the roads by using in-vehicle technology that immobilises their cars. They are pushing for systems that prevent drivers from starting their cars, help cars avoid collisions and prevent vehicles from starting if the occupants don’t wear seat belts. "Ninety per cent of all crashes have an element of human error," NHTSA administrator David Strickland said. "We really
  • May 30, 2013
    Wavetronix radar-based traffic sensor cuts costs
    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
  • May 29, 2013
    ITS advancement lays beyond benefit-cost analysis
    Shelley Row, former Director of the US Department of Transportation’s ITS Joint Program Office, gives her views on the way forward for the industry. We, as intelligent transportation system (ITS) proponents and engineers, tend to be overly fixated on benefit-cost data. We want decisions to be made on logical grounds for which benefit-cost calculations are optimal. While benefit-cost data is necessary, it is not always sufficient. We can learn from our history where we see three broad groups of ITS deploymen