Skip to main content

Arizona DOT testing wrong-way vehicle detectors

The Arizona Department of Transportation (ADOT) is testing wrong-way vehicle detection devices next to off-ramps along Phoenix-area freeways as part of an ongoing research effort to reduce the risk of wrong-way crashes. Three detectors, manufactured by Tapco have been installed along the northbound Interstate 17 exit to State Route 74, the eastbound Interstate 10 exit at Ray Road and the northbound Loop 101 off-ramp at Thunderbird Road. Two other detection devices, manufactured by Wavetronix, were instal
August 13, 2015 Read time: 2 mins
The 6576 Arizona Department of Transportation (ADOT) is testing wrong-way vehicle detection devices next to off-ramps along Phoenix-area freeways as part of an ongoing research effort to reduce the risk of wrong-way crashes.

Three detectors, manufactured by 989 Tapco have been installed along the northbound Interstate 17 exit to State Route 74, the eastbound Interstate 10 exit at Ray Road and the northbound Loop 101 off-ramp at Thunderbird Road. Two other detection devices, manufactured by Wavetronix, were installed late last year along a pair of Loop 101 exit ramps in the West Valley.

The Tapco system includes radar and camera sensors designed to detect wrong-way vehicles on freeway exit ramps. When a vehicle is detected, the system activates blinking red LED lights on two ‘wrong way’ signs to try to warn the driver. During the testing stage, the system also is set up to send email messages with photos to notify ADOT staff and the Department of Public Safety that a wrong-way vehicle is detected.

The three locations where the system is being tested were selected based on previous research, including figures from the Department of Public Safety on 9-1-1 emergency calls reporting wrong-way vehicles.

The testing of these detectors is among several steps ADOT has taken in efforts to reduce the risk of crashes involving wrong-way drivers on state highways, including a study of wrong-way vehicle detection and warning systems, including a review of potential countermeasures.

Following a pilot project, more than 500 larger and lowered ‘wrong way’ and ‘do not enter’ signs have been installed along dozens of state highway off-ramps. In one project earlier this year, ADOT used approximately US$300,000 in available highway maintenance funding to manufacture and install larger signs, as well as pavement arrows, along approximately 90 off-ramps around the state.

For more information on companies in this article

Related Content

  • Queensland C-ITS safety boost
    August 16, 2022
    Bruce Highway project involving Kapsch TrafficCom expected to reduce crashes by 20%
  • Cooperative road infrastructures - progress and the future
    February 1, 2012
    Robert Bertini, deputy administrator of the USDOT's Research and Innovative Technology Administration, discusses the research and deployment paths of cooperative road infrastructures. High-level analysis by the US's National Highway Traffic Safety Administration (NHTSA) of the potential of Vehicle-to-Infrastructure/Infrastructure-to-Vehicle (V2I/I2V) and Vehicle-to-Vehicle (V2V) technologies indicates that V2V could in exclusivity address a large proportion of crashes involving unimpaired drivers. In fact,
  • Making enforcement multi-functional
    June 23, 2016
    New enforcement equipment is coming onto the market apace, as Colin Sowman discovers. If there is one word that epitomises the current trend in enforcement technology then that word is consolidation: multi-function cameras, miniaturisation and combining radar and visual detection methods. One example is Turkish company Ekin Technology’s recently introduced Micro Plate is claimed to be the smallest licence plate recognition device. In addition to logging licence plate data, the system records speed, date, ti
  • UK university projects shows wireless sensors could improve rail crossing safety
    August 23, 2016
    A study by rail experts at the University of Huddersfield in the UK has concluded that railway crossing safety could be improved by networks of tiny wireless sensors attached to the tracks. Following extensive research at the university’s Institute of Railway Research (IRR), the Department for Transport-funded project established that the sensors could be powered by vibrations from approaching trains. They would then form a wireless network to send a message to lower or raise the gates. According to t