Skip to main content

Next phase in Dutch Shockwave traffic jam service: mobility services

Beginning this week, road users on the A58 motorway between Eindhoven and Tilburg in the Netherlands can test the rapid data infrastructure for their Shockwave traffic jam service. Thirty-four wi-fi beacons on the motorway ensure that the FlowPatrol and ZOOF apps transmit traffic warnings before the driver reaches the congestion. At the moment, the infrastructure is only being used by the Shockwave traffic jam services provided by FlowPatrol and ZOOF, but drivers on the A58 can expand their service to parti
April 27, 2016 Read time: 2 mins

Beginning this week, road users on the A58 motorway between Eindhoven and Tilburg in the Netherlands can test the rapid data infrastructure for their Shockwave traffic jam service. Thirty-four wi-fi beacons on the motorway ensure that the FlowPatrol and ZOOF apps transmit traffic warnings before the driver reaches the congestion.

At the moment, the infrastructure is only being used by the Shockwave traffic jam services provided by FlowPatrol and ZOOF, but drivers on the A58 can expand their service to participate in the test. This requires a Talking Traffic kit to be installed in the vehicle, connected to the driver’s smart phone to facilitate rapid communication with the wi-fi beacons, providing the driver with real-time, personalised travel advice.

The Shockwave project partners believe their development could provide the building blocks for new in-vehicle mobility services in the vehicle, such as a warning system for roadworks, weather conditions or approaching emergency services, or a system that communicates with traffic lights to inform drivers of the time to green, or that can assign priority to certain traffic flows. The developments have been based on international standards and the project partners say that new services can be easily can be easily implemented.

Related Content

  • November 20, 2013
    Bluetooth and Wi-Fi offer new options for travel time measurements
    New trials show Bluetooth and Wi-Fi signals can be reliably used for measuring travel times and at a lower cost than an ANPR system, but which is the better proposition depends on many factors. Measuring travel times has traditionally relied automatic number plate (or licence plate) recognition (ANPR/ALPR) cameras capturing the progress of vehicles travelling along a pre-defined route. Such systems also have the benefit of being able to count passing traffic and have become a vital tool in dealing with c
  • June 7, 2021
    Ground-breaking neutral V2X platform for C-ITS
    Monotch's TLEX can be used by multiple stakeholders across C-ITS ecosystem
  • October 8, 2015
    European, Australian companies to collaborate on V2I
    Siemens, Cohda Wireless and NXP Semiconductors are to partner on vehicle to infrastructure (V2I) technology, a part of cooperative intelligent transport systems (C-ITS), which share information between vehicles and roadside infrastructure such as traffic lights. This increases the quality and reliability of information available to drivers about their immediate environment, other vehicles and road users. Under the agreement, Cohda Wireless will develop and produce V2I roadside units (RSUs) for Siemens, e
  • April 19, 2012
    New York unveils ‘Midtown in Motion’ traffic management system
    New York Mayor Bloomberg has unveiled a new, technology-based traffic management system that allows city traffic engineers to monitor and respond to Midtown Manhattan traffic conditions in real time, improving traffic flow on the city’s most congested streets.