Skip to main content

Ford trials geofencing in Cologne

Use of electric E-Transit vans will determine impact of speed limiting to improve safety
By Adam Hill June 22, 2022 Read time: 2 mins
The trial extends to all 30km/h zones in the centre of Cologne, as well as in selected 50km/h and 30km/h zones elsewhere in the city (© Thomas Stockhausen | Dreamstime.com)

Ford is trialling connected vehicle technology using geofencing in Cologne, Germany.

Running until March 2023, researchers are using two Ford Pro vehicles to analyse the impact of speed limiting to improve traffic flow and reduce the risk of accidents.

Testing with all-electric Ford E-Transit vans extends to all 30km/h zones in the centre of Cologne, as well as in selected 50km/h and 30km/h zones elsewhere in the city.

The trial brings together the Ford City Engagement team, city officials in Cologne and Aachen, and Ford software engineers in Palo Alto, US.

The engineers have developed technology that connects the vehicle to the geofencing system for GPS tracking and data exchange.

The driver receives information via the dashboard display cluster, with the new speed limit flashing below the current speed.

The vehicle automatically reduces speed in line with the geofenced zone - although the driver can override the system and deactivate the speed limit control at any time.

“Connected vehicle technology has the proven potential to help make everyday driving easier and safer to benefit everyone, not just the person behind the wheel,” said Michael Huynh, manager, City Engagement Germany, Ford of Europe.

“Geofencing can ensure speeds are reduced where – and even when – necessary to help improve safety and create a more pleasant environment.”

Ford says its geofencing speed limit control system could enable drivers to set their own geofencing zones at speeds as low as 20 km/h - and that speed limits could also be set dynamically, to take into account local hazards, temporary road works and the time of day.

The manufacturer says the Cologne research is part of broader initiatives using pre-production and prototype Ford E-Transit vehicles in the postal, municipal and utilities services, as well as last-mile and grocery delivery sectors within France, Germany, Italy, the Netherlands, Norway and the UK.

For more information on companies in this article

Related Content

  • Vehicle data translator for road weather monitoring
    February 1, 2012
    Sheldon Drobot, Michael Chapman and Amanda Anderson, NCAR, and Paul Pisano, FHWA, detail latest results of testing of a vehicle data translator for road weather monitoring and information applications. The use of vehicle sensor data to improve weather and road condition products, envisioned as part of the US Department of Transportation Research and Innovative Technology Administration's (RITA's) IntelliDriveSM initiative, could revolutionise the provision of road weather information to transportation syste
  • The importance of going with the flow
    April 6, 2018
    Ensuring worker safety and up-to-date driver information is crucial to ensure that roadworks are not a source of danger and delay. Andrew Williams looks at a scheme on the A14 in Cambridgeshire, UK. In recent years, portable workzone ITS solutions have emerged as important tools in the management of major roadworks and system upgrade projects - and are viewed as an increasingly vital means of ensuring any ongoing traffic flow disruption is kept to a minimum. The technology forms a central component of an
  • Esri maps cause and effect
    September 26, 2024
    The work of the Connecticut Transportation Safety Research Center means engineers can concentrate on developing more effective safety measures, rather than having to sort out raw crash data
  • Debating the future development of ANPR
    July 31, 2012
    What future is there for automatic number plate recognition? Will it be supplanted by electronic vehicle identification, or will continuing development maintain the technology's relevance? In recent years, digitisation and IP-based communication networks have allowed Automatic Number Plate Recognition (ANPR) to achieve ever-greater utility and a commensurate increase in deployments. But where does the technology go next - indeed, does it have a future in the face of the increasing use of, for instance, Dedi