Skip to main content

New way of ‘harvesting’ energy from shock absorbers ‘could benefit transport industry’

A UK university student researcher has made a breakthrough by designing and constructing a new system which ‘harvests’ the energy generated by a vehicle’s shock absorbers and feeds it back into batteries or electrical systems such as air conditioning. Ruichen Wang from the University of Huddersfield carried out the project to obtain his doctorate at the University and has published his findings. The article, Modelling, Testing and Analysis of a Regenerative Hydraulic Shock System, provides a summary of
October 31, 2016 Read time: 2 mins
A UK university student researcher has made a breakthrough by designing and constructing a new system which ‘harvests’ the energy generated by a vehicle’s shock absorbers and feeds it back into batteries or electrical systems such as air conditioning.

Ruichen Wang from the University of Huddersfield carried out the project to obtain his doctorate at the University and has published his findings.  The article, Modelling, Testing and Analysis of a Regenerative Hydraulic Shock System, provides a summary of current progress in the field of vehicle energy harvesting and a detailed account of the theory and the practical development of his device, designed for installation in a heavy good vehicle.

After working on the mathematics, computational analysis and design of his device, Dr Wang constructed his full-size, ready-to-test prototype, which his supervisor Professor Ball says is a realisable application for energy recovery from a typical road vehicle.
 
Harvested energy can be used for any auxiliary purpose in a vehicle, said Professor Ball, and in hybrids it could recharge the electric motor.

The next stage is to work with an industrial partner to install and test Dr Wang’s system in a road-going vehicle.  But the technology has a wide application and there is every possibility that it could be adapted for rail vehicles, especially as Dr Wang has taken up a full-time research post at the University of Huddersfield’s Institute of Railway Research (IRR).

According to Dr Paul Allen, who leads the IRR’s Centre for Innovation in Rail, the IRR is now exploring how energy harvesting and modelling techniques can be applied to developing low-cost self-health monitoring dampers for railway vehicles, a project which already has two industrial partners.

Related Content

  • January 19, 2024
    Better traffic management with acoustics? Sounds good, says SequoIA Analytics
    French start-up is using roadside fibre-optic cables to provide better traffic data
  • February 27, 2013
    The benefits of combining enforcement and traffic management
    Jason Barnes considers how combining enforcement equipment with other traffic management technologies might benefit our future – if only the will were really in place to do so. During the ITS World Congress in Vienna in October last year, Navtech Radar and Vysion­ics ITS announced a strategic partnership that would combine the expertise of Navtech in millimetre-wave wide-area surveillance technology with Vysionics’ machine vision-based automatic number plate recognition (ANPR) and average speed measurement
  • December 17, 2012
    Houston traffic technology ‘going global’
    A real-time traffic data collection system developed by the Texas A&M University Transportation Institute (TTI) is going nationwide and could go global, according to the university. The development, known as AWAM (Anonymous Wireless Address Matching), uses the first portion of the MAC address from anonymous wireless devices, such as Bluetooth-enabled devices, carried in vehicles to measure the travel time between two points along freeways and arterial roads in rural and urban environments. It provides real-
  • December 7, 2021
    VTTI sees future of truck ADS
    Although automated driving systems (ADS) for trucks promise increased safety, productivity, and efficiency, it is not clear how they should be integrated into fleet operations with conventional vehicles. Erin Mabry and Martin Walker, of VTTI, provide answers