Skip to main content

UK city to introduce thermal imaging traffic management

City of York Council is to introduce thermal imaging technology on key cycle routes in York to help reduce the time spent at traffic signals, improve journey reliability and cycle safety. The city is set to become one of the first councils in the country to start using the technology which will accurately detect cyclists at signals by their ‘heat signature’, allowing the signals to react accordingly and be adjusted to give more ‘green time’ for cyclists. The thermal technology was first introduced by
March 24, 2016 Read time: 2 mins
City of York Council is to introduce thermal imaging technology on key cycle routes in York to help reduce the time spent at traffic signals, improve journey reliability and cycle safety.

The city is set to become one of the first councils in the country to start using the technology which will accurately detect cyclists at signals by their ‘heat signature’, allowing the signals to react accordingly and be adjusted to give more ‘green time’ for cyclists.

The thermal technology was first introduced by 1466 Transport for London last year as part of the cycle superhighway network.

The scheme is all part of a multi million pound overhaul of York’s ageing traffic signals – the largest scheme the city has seen since the last major overhaul of York’s traffic signals in the mid 1990s which introduced the city’s new urban traffic control system to control the city’s transport network.

The five year scheme also includes replacement of worn out and unreliable in-road road loops with camera systems for traffic detection.

The authority is also proposing to replace approximately half of the 122 traffic signals and 54 pedestrian crossings in the city over a five-year rolling programme with modern equipment.
UTC

Related Content

  • July 11, 2018
    Cost benefit: Toronto retimings tame traffic trauma
    Canada’s largest city reckons that it is saving its taxpayers’ money simply by altering the way traffic lights work. David Crawford reviews Toronto’s ambitious plans to ease congestion. Toronto, Canada’s largest metropolis (and the fourth largest in North America), has saved its residents CAN$53 (US$42.4) for every CAN$1 (US$0.80) spent over a 2012-2016 traffic signal retiming programme, according to figures released by its Transportation Services Division. The programme covered 1,275 signals (the city’s to
  • December 20, 2021
    The scourge of poor air quality and rising pollution levels and how they can be tackled
    Arguably, air pollution is one of the greatest challenges facing our world today. It impacts people, economies and the environment. It is clear that policymakers must act swiftly to improve air quality. ITS has a huge role to play in providing solutions. Here, Swarco, as a solution provider, shares inside tips on how to use modern ITS to save lives, economies and the environment.
  • August 12, 2015
    Dynamic Message Signs : Don’t replace, refurbish and upgrade
    Refurbishing old dynamic message signs can save money and increase technical capabilities as David Crawford discovers. Evidence is growing on both sides of the Atlantic of the scope for retrofitting old or technically out-of-date dynamic message signs (DMS) with new electronic equipment, to save on the costs of installing full-scale replacements. In the last four months of 2014, a number of US states progressed programmes that achieved savings of more than US$1.75 million (€1.56million).
  • April 26, 2013
    ITS asset management matters
    Maintenance of on-road ITS kit needs to become more sophisticated; while new technologies can deliver better road maintenance. David Crawford investigates both sides of the issue "Good information is key to effective ITS asset maintenance,” says Ian Routledge of the Ian Routledge Consultancy (IRC), whose Imtrac (Information Management for TRAffic Control) system is poised for European expansion. Developed as an ‘intelligent filing cabinet’ for storing information about on-road equipment, the online database