Skip to main content

Kistler WIM innovation wins accreditation

A major weigh-in-motion (WIM) innovation being featured here at the ITS World Congress by Kistler has already won accreditation from the International Organisation of Metrology (OIML). To address the ever increasing problem of road surface damage caused by heavy transport, WIM systems employing Kistler quartz sensors have been delivering valuable traffic data for many years. There is also a long tradition in using WIM for preselection of overloaded vehicles.
October 7, 2015 Read time: 2 mins
Tomáš Pospíšek of Kistler

A major weigh-in-motion (WIM) innovation being featured here at the ITS World Congress by 657 Kistler has already won accreditation from the International Organisation of Metrology (OIML).

To address the ever increasing problem of road surface damage caused by heavy transport, WIM systems employing Kistler quartz sensors have been delivering valuable traffic data for many years. There is also a long tradition in using WIM for preselection of overloaded vehicles.

However, Kistler says the chain has been missing the last link that would allow road authorities to implement automatic enforcement based on vehicle weight data or to introduce toll-by-weight models in a free-flow environment. This growing demand for certified WIM systems compliant with international standards has been recently met by Kistler’s OIML-certified WIM technology.

The company is the first WIM manufacturer to have received the International Organisation of Metrology (OIML) R-134 certificate for vehicle weighing with strip sensors. Supported by this certificate, Kistler WIM systems based on maintenance-free Lineas quartz WIM sensors and the Kistler WIM data logger can now be used for legal applications.

In the world of international WIM standards, Kistler says there is a significant difference in the definition of the accuracy classes. While COST323 and ASTM E1318 state that only 95% of WIM measurements need to fulfil the declared accuracy, the OIML requires all (100%) measurements to be in the requested accuracy class.

The Kistler WIM system meets OIML accuracy F5 meaning that for initial verification all errors are below ±2.5 % and during standard operation the system has a measurement error smaller than ±5%.

For more information on companies in this article

Related Content

  • ITF diagnoses South Asia’s breathing difficulties
    August 26, 2022
    One of the world’s fastest-growing regions faces major transport sector decisions if it is to avoid spiralling emissions problems in coming decades. Alan Dron takes a look at a new report on Asia from the International Transport Forum
  • Kerb your enthusiasm, warns Passport
    March 4, 2019
    Dynamic kerbside management is crucial if urban authorities are to address increasingly chaotic situations caused by the gig economy and mobility innovation, says Adam Warnes at Passport Demand for the kerbside is growing and changing and it’s no surprise when you consider the recent innovations within the mobility industry. For starters, there are new modes of transport, including ride-shares, electric vehicles (EVs), dockless cycles, last-mile consolidations and autonomous vehicles (AVs). Secondly, the
  • IRD awarded WIM maintenance contract in Pennsylvania
    July 20, 2016
    International Road Dynamics (IRD) has been awarded a US$4,618,555 contract from the Pennsylvania Department of Transportation (PennDOT) for the installation, calibration and maintenance of weigh-in-motion (WIM) systems across the state. This contract has an initial term of two years and provides an option for renewal for up to three additional years. PennDOT currently has 38 active IRD WIM systems that are covered under this agreement. Nine of these include overview camera systems. Data collection and pl
  • Blockchain: the next big thing for ITS? Really?
    October 8, 2018
    Everyone’s heard of blockchain – but most people are less sure about what it really is, and how it might be used in transportation. Andrew Williams peers into cyberspace to find some answers. A growing number of organisations in the ITS industry are exploring how blockchain technology could be used for ITS and mobility applications. So, what exactly is blockchain technology? What are the key current and potential applications in the mobility and ITS sector? And what practical benefits might it bring?