Skip to main content

Kapsch finishes modernising Austrian GO toll collection system

Kapsch TrafficCom says its modernised Austria-wide toll collection system for trucks over 3.5 tonnes allows enforcement to be carried out through a single gantry. Highway and expressway operator Asfinag is now using the Go Maut 2.0. The gantry will carry the radio beacons and cameras for number plate recognition as well as an optical vehicle classification system. The vehicle class and number of axles can be determined in free-flowing traffic using high-resolution video cameras and stereo video imaging p
August 31, 2018 Read time: 2 mins
4984 Kapsch TrafficCom says its modernised Austria-wide toll collection system for trucks over 3.5 tonnes allows enforcement to be carried out through a single gantry. Highway and expressway operator 750 Asfinag is now using the Go Maut 2.0.


The gantry will carry the radio beacons and cameras for number plate recognition as well as an optical vehicle classification system. The vehicle class and number of axles can be determined in free-flowing traffic using high-resolution video cameras and stereo video imaging processing technologies. The control centre will also apply plausibility algorithms based on database image processing methods to increase the efficiency of toll enforcement, the company says.

Kapsch adds that the toll collection technology comes with energy saving components which will reduce operating costs of the monitoring process.

The scope of the two-year project includes the modernisation of 387 toll gates, 72 monitoring stations and six main toll collection stations. In addition, 34 toll gates and four new monitoring stations have been built.

Meanwhile, since 2016 the company has also upgraded roadside infrastructure at around 500 locations and at the RSE proxy server which connects the equipment with the tolling back-office.

Subcontractors involved in the initiative include Forster (steel construction), Mehler (control cabinet construction), B&R (industrial computers), DBP and Eqos (installation services).

For more information on companies in this article

Related Content

  • EETS: still struggling to become reality
    December 4, 2013
    Erich Erker, Norbert Schindler, Peter Tschulik from Siemens Electronic Tolling examine the barriers to EETS deployment. Tolling in Europe was introduced to pay for the construction and operation of individual tunnels, bridges and highways and has evolved in major steps. The original manual tolling systems were highly disruptive to traffic flow and required the creation of large toll plazas, with multiple lanes and toll booths to ensure an acceptable throughput. With the introduction of Dedicated Short Range
  • Indra to upgrade Philippines toll system
    November 4, 2015
    Manila North Tollways Corporation (MNTC) has awarded Indra the design, supply, installation, and commissioning of the new toll control solution for its Subic-Clark-Tarlac Expressway (SCTEX) concession. The project includes the integration of the SCTEX toll control solution with that of the system that Indra recently implemented for the North Luzon Expressway (NLEX), the main motorway connecting the capital region of Metro Manila to the northern regions of the country. The contract, awarded in a consortium w
  • Agencies in pursuit of high-speed WIM accuracy
    April 20, 2017
    Alan Dron looks at where WIM is heading in the near future. As Weigh-In-Motion (WIM) systems grow in sophistication and accuracy, they are increasingly being used in more active roles to help ensure road safety through enforcement action against overweight vehicles.
  • Kapsch launches new V2X platform
    November 19, 2013
    Kapsch TrafficCom is expanding its V2X technology portfolio with the new EVK-3300 communications platform for V2X communication, which it is introducing at the Car 2 Car Communication Consortium Forum in Munich. With its EVK-3300 platform Kapsch is directly targeting car manufacturers and suppliers with the EVK-3300, which it says is an essential part of V2X, the communication between vehicles and infrastructure and between vehicles themselves. The platform can be integrated into vehicles in various