Skip to main content

Study reveals in-car devices aid positive changes to driver behaviour

The results of a four-year study by the Field Operational Tests of Aftermarket and Nomadic devices in Vehicles (TeleFOT) Consortium were presented at a recent conference in Brussels. The study focused on the assessment of the impact of driver support functions provided by in-vehicle aftermarket and nomadic devices on driving and driver behaviour. Coordinated by the Technical Research Centre of Finland (VTT) and with a budget of US$19.5 million, the four-year TeleFOT project is one of the biggest traffic IC
December 3, 2012 Read time: 3 mins
The results of a four-year study by the Field Operational Tests of Aftermarket and Nomadic devices in Vehicles (TeleFOT) Consortium were presented at a recent conference in Brussels.  The study focused on the assessment of the impact of driver support functions provided by in-vehicle aftermarket and nomadic devices on driving and driver behaviour.

Coordinated by the Technical Research Centre of Finland (814 VTT) and with a budget of US$19.5 million, the four-year TeleFOT project is one of the biggest traffic ICT projects in Europe. The recently completed operational field trials produced a unique set of data, based on a comprehensive assessment of driver behaviour and the efficiency, quality, robustness and user-friendliness of interactive in-vehicle traffic systems and services.

Many intelligent transport services provided by nomadic devices are already part of the daily lives of road users, but information about their actual impacts on road safety, for example, has not previously been available.

Almost 3,000 test drivers were recruited for the project from Finland, Sweden, Germany, the UK, France, Greece, Italy and Spain, covering a combined distance of more than ten million kilometres.

The extensive field trials reveal that intelligent transport systems allowed drivers to find quicker and less congested routes, and prevented them from speeding accidentally. Fuel costs also dropped, as did driving-related stress and anxiety. The drivers’ sense of safety and driving comfort increased.

The project studied the impact of driver support functions provided by in-vehicle aftermarket devices on safety, efficiency, mobility, the environment, and driver behaviour in road traffic. The services tested included static and dynamic navigation support, green driving support, speed limit information and traffic information.

The main benefits of the functions were perceived by the participants to be convenience (easy access to information), comfort (less uncertainty, fewer driving errors), economic (less cost) and environment (fewer emissions).

Of the tested devices, navigators and traffic information systems, in particular, increased efficiency by allowing drivers to find quicker and less congested routes. Up to 45 per cent of participants, particularly those in large cities, reported that the traffic information function helped them to avoid travel delays and traffic jams. Green driving systems guided drivers to routes that lowered their emissions, and towards driving more economically. Green driving advisory systems were found to reduce fuel consumption by up to 6 per cent.

At the Finnish test site, for example, the use of a green driving system in bus transport helped to lower fuel consumption and to reduce speeding, improving road safety. Another significant finding is that the systems reduced driving-related stress and anxiety across the board and, in all the participating countries, increased the drivers’ sense of safety and driving comfort. From the perspective of mobility, the results were positive for all systems.

The users’ expectations for the services were high at first. After using the services for some time, they were slightly disappointed not to have seen a direct benefit. The longer they used the services, the more clearly they could see the benefits and advantages, and the more satisfied they were.

For more information on companies in this article

Related Content

  • Global mobility study: world on the move
    November 27, 2020
    ERF reviews impact of new mobility on road infrastructure in 20 countries pre-Covid
  • Hard shoulder running aids uniform traffic flow and safer driving
    January 23, 2012
    David Crawford detects a market for European experience. Well-established now in at least three European countries, Hard Shoulder Running (HSR) on motorways is exciting growing interest in the US. A November 2010 Report to Congress by the Federal Highway Administration (FHWA), on the Efficient Use of Highway Capacity, notes the role of HSR in the European-style Active Traffic Management (ATM) strategies now being recommended for implementation in the US where, until recently, they were virtually unknown.
  • Common European language for V2V and V2I communication demonstrated
    July 10, 2012
    A European Commission-sponsored research project took a significant step towards vehicle-to-vehicle (V2V) and vehicle to infrastructure (V2I) when it presented its results at the Dutch DITCM test site in Helmond last week. The event unveiled the Drive C2X reference system, demonstrating for the first time the ability to create a harmonised testing environment across Europe. The research project brings together car manufacturers, research institutes, authorities and information technology providers to provid
  • ITF award for Estonian smart border crossing project
    May 19, 2015
    An innovative solution for managing traffic queues at international borders is the winner of the 2015 Transport Achievement Award offered by the International Transport Forum at the OECD. The Award recognises demonstrated achievement of excellence in transport provision that has improved, enabled or facilitated tourism. The GoSwift queue management service, an Estonian public-private partnership, allows pre-booking of time slots and virtual queuing for border crossings via the web, a call centre or self-