Skip to main content

Siemens unveils new Heimdall detector

Siemens has extended its range of kerbside detection solutions with the introduction of a new Heimdall kerbside volumetric pedestrian detector. Based on advanced above-ground radar technology, the detector has the capability to indicate the occupancy of the pedestrian waiting area at any given time, allowing the most appropriate kerbside strategies to be selected depending on the numbers of pedestrians waiting to cross. The new detector is suited to areas of high pedestrian presence, such as shopping centre
June 17, 2015 Read time: 2 mins

189 Siemens has extended its range of kerbside detection solutions with the introduction of a new Heimdall kerbside volumetric pedestrian detector.

Based on advanced above-ground radar technology, the detector has the capability to indicate the occupancy of the pedestrian waiting area at any given time, allowing the most appropriate kerbside strategies to be selected depending on the numbers of pedestrians waiting to cross. The new detector is suited to areas of high pedestrian presence, such as shopping centres and entertainment and sporting venues.

With kerbside and on-crossing pedestrian detection as well as SCOOT, MOVA, stop line and VA options for vehicles, Heimdall offers comprehensive and reliable above-ground detection at the roadside and is largely immune to changing environmental conditions, including sun, shadows, snow and fog. Heimdall has become a well established product in the UK and overseas markets, its ease of deployment and proven performance proving popular with users, as well as its compact form that ensures that unnecessary street clutter is minimised.

For more information on companies in this article

Related Content

  • On a WIM – a global view of weigh in motion
    May 25, 2016
    Q-Free’s Andrew Lees looks at regional characteristics and technology trends in the global Weigh-In-Motion market. The principles of Weigh-In-Motion (WIM) are well established. Data derived from vehicles passing over in-ground sensors can be interpreted for vehicle classification (axle counts and spacing) and positive identification (especially when linked to image capture) applications as well as to derive individual axle and gross vehicle weight (GVW).
  • McCain showcases C-V2X connected vehicle demo at CES 2018
    January 11, 2018
    McCain is showcasing its connected vehicle-ready technology at a live Cellular-V2X (C-V2X) demonstration with Qualcomm Technologies during the Consumer Electronics Show 2018. It aims to show how the technology can enable data exchange between vehicles and traffic to improve safety, optimize traffic flow and prepare for automated driving. For the demonstration, McCain’s advanced transportation solutions are supplying real-time traffic data, including Signal Phase and Timing, and traffic pre-emption, to
  • I-80 Smart Corridor sets the ITS standard for California's Bay Area
    March 23, 2015
    Colin Sowman looks at California’s ‘smartest’ road which will open this spring to counter congestion and accidents on one of the Bay Area’s busiest interstates. Interstate 80 (I-80) is one of the busiest roads in the San Francisco Bay area with up to 270,000 vehicles using the corridor every day. The section between the Carquinez Bridge in Crockett and the Bay Bridge not only suffers congestion during the working week but also at weekends. Traditional remedies such as building additional lanes (there are al
  • I-80 Smart Corridor sets the ITS standard for California's Bay Area
    March 23, 2015
    Colin Sowman looks at California’s ‘smartest’ road which will open this spring to counter congestion and accidents on one of the Bay Area’s busiest interstates. Interstate 80 (I-80) is one of the busiest roads in the San Francisco Bay area with up to 270,000 vehicles using the corridor every day. The section between the Carquinez Bridge in Crockett and the Bay Bridge not only suffers congestion during the working week but also at weekends. Traditional remedies such as building additional lanes (there are al