Skip to main content

Trafficware redefines wireless detection technology

US traffic management solutions supplier Trafficware has developed the Valence Pod, a wireless vehicle detection system that the company says provides the reliability of loops without the need for cabling or wireless repeaters for the intersection and advanced detection. The Pod uses road sensors to detect the presence of vehicles, and can be used individually for a smaller zone or grouped with other Pods to create a larger, smarter detection zone. The omni-directional antenna will detect sensors from hundr
April 19, 2013 Read time: 2 mins
US traffic management solutions supplier 5642 Trafficware has developed the Valence Pod, a wireless vehicle detection system that the company says provides the reliability of loops without the need for cabling or wireless repeaters for the intersection and advanced detection.

The Pod uses road sensors to detect the presence of vehicles, and can be used individually for a smaller zone or grouped with other Pods to create a larger, smarter detection zone. The omni-directional antenna will detect sensors from hundreds of feet away, allowing access to all Pods at an intersection with one antenna. Advanced detection sensors can be reached without needing a repeater by using long range directional antennas. The system is easily installed, requiring only three main components, the base station located in the controller, the wireless access point, and the sensor.

Trafficware’s chief engineer, Clyde Neel, explains that “the magnetometer technology is robust and well suited for vehicle detection. Applying our industry depth of experience in other forms of detection played a critical role in overcoming some of the technical challenges to making this an effective and reliable solution.”

Related Content

  • December 4, 2012
    ITS World Congress debates perceptions of enforcement
    The technical programme of this year’s ITS World Congress in Vienna includes a special session on the image of enforcement. ITS International examines the scale of the problem and what can be done about it. Debate on the merits and difficulties of enforcing speed limits appears centred on a conflict of principles. Put very simply, local communities, people living close to busy or hazardous roads, want to see traffic speeds calmed. Drivers on those roads, on the whole, want their principle of freedom to be m
  • June 1, 2016
    Traffic management turns to machine vision
    Traffic engineers can use the latest advances in vision technology to streamline and enhance traffic management. The idea of using one camera to perform all functions at an intersection is attractive to authorities for many reasons and camera supplier Gridsmart says it can make this happen. Its Bell Camera offers a horizon to horizon view that includes the centre of the intersection where vehicles, bicycles and pedestrians cross paths and it can be used for traffic light actuation, traffic data collection a
  • December 21, 2017
    Communications hold key to expanding ITS wireless network expansion
    Wireless transmission of data and control information is making smarter traffic management easier and cheaper to install. It has long been known that connectivity is the key to improving traffic management and many cost-benefit studies prove that investment in new technology can be justified in terms of reduced congestion, shorter travel times, improved safety and air quality. However, many authorities’ cap-ex budgets only cover urgent matters, not improvements, making it difficult, if not impossible to
  • October 20, 2015
    Flir smart traffic management in Darmstadt
    Part of a larger urban zone, the city of Darmstadt near Frankfurt, Germany, does not escape the problems of traffic congestion. In a bid to improve the situation, the city’s traffic authorities have installed more than 200 video detectors from Flir Systems, along with Flir’s video management system, Flux, which monitors the traffic streams coming from a wide variety of cameras. The city is also using various types of video sensors for vehicle, pedestrian and cycle detection, all of which are used to con