Skip to main content

Mobile pedestrian target

A technology collaboration between InnovITS Advance and TRL has led to the creation of an advanced form of pedestrian detection target which it is claimed will help those specifying and developing automotive safety systems based on pedestrian recognition to test and certify their products in a more flexible, accurate and repeatable manner. The new pedestrian target is based around a robust, free standing dummy that provides a realistic human aspect and moves under remote control with a programmable range o
July 17, 2012 Read time: 2 mins
A technology collaboration between 67 innovITS Advance and 491 TRL has led to the creation of an advanced form of pedestrian detection target which it is claimed will help those specifying and developing automotive safety systems based on pedestrian recognition to test and certify their products in a more flexible, accurate and repeatable manner.

The new pedestrian target is based around a robust, free standing dummy that provides a realistic human aspect and moves under remote control with a programmable range of speed and acceleration settings. It emulates the leg motion associated with a normal walking or running gait and can currently be configured for three body sizes. Each of these body options is fully detachable and designed to minimise vehicle damage should the pedestrian detection system fail to operate, and the unit moves on an extremely low profile base unit which is invisible to vehicle systems.

When combined with the ground truth positioning system installed at InnovITS Advance, the new pedestrian detection target system provides a fast, highly accurate and repeatable testing capability for this important category of automotive safety system.

For more information on companies in this article

Related Content

  • Wi-SUN: here’s why mesh networking works
    May 10, 2019
    There are several networking options available for smart city planners. Phil Beecher of Wi-SUN Alliance makes the case for wireless mesh networks when it comes to rolling out IoT solutions The Internet of Things (IoT) is growing fast. Connecting thousands of sensors and control systems in bi-directional networks is paving the way for a new generation of smart city and transport infrastructures. For many of these applications, wireless connectivity is essential where cable installation is not practical.
  • Loop detection still has a part in traffic management
    March 2, 2012
    Bob Lees, co-founder of Diamond Consulting Services, on why the loop detector just refuses to go away. The more strident proponents of newer and emergent detection technologies are quick to highlight what they see as the disadvantages, and hence the imminent passing, of the humble inductive loop. The more prosaic will acknowledge that loops continue to have a part to play in traffic management, falling back on the assertion that it is all a question of application. And yet year after year the loop, despite
  • High-speed WIM moves onto the main highway
    May 24, 2016
    High-speed weigh-in-motion is starting to make its mark on both sides of the Atlantic. As a transit country the Czech Republic experiences a large number of overloaded vehicles, which greatly increase highway maintenance costs. This prompted its Transport Ministry to trial an extension of the capabilities of the existing truck tolling system to allow the dynamic high-speed weighing of cargo vehicles. In effect the tolling enforcement gantries become weigh-in-motion (WIM) locations.
  • WIM system certification is a complex business
    February 21, 2018
    There are interesting moves afoot to create Germany’s first Weigh-In-Motion enforcement site in Hamburg – but Florian Weiss of Traffic Data Systems warns that WIM certification is a complex business. In the past, Weigh-In-Motion (WIM) was mainly used for statistical (WIM-S) and pre-selection (WIM-P) applications. These abbreviations - as well as WIM-E (enforcement) and WIM-T (tolling) - were created by Traffic Data Systems during Intertraffic 2006 in Amsterdam. This was also the year when we started the