Skip to main content

LRC evaluates headlight systems to improve night driving

Through its Transportation Lighting and Safety program, the Lighting Research Center (LRC) at Rensselaer Polytechnic Institute is evaluating the potential for new lighting technologies and approaches to improve driving safety at night, including new car headlight systems. For the study, vehicle manufacturer Audi AG has provided the LRC with an A7 equipped with adaptive high beam ‘matrix lights’ that allow drivers to benefit from using high beams all the time while selectively dimming a portion of the bea
June 26, 2015 Read time: 3 mins
Through its Transportation Lighting and Safety program, the Lighting Research Center (LRC) at Rensselaer Polytechnic Institute is evaluating the potential for new lighting technologies and approaches to improve driving safety at night, including new car headlight systems.

For the study, vehicle manufacturer 2125 Audi AG has provided the LRC with an A7 equipped with adaptive high beam ‘matrix lights’ that allow drivers to benefit from using high beams all the time while selectively dimming a portion of the beam in the direction of other drivers to prevent glare. In the Audi system, the beam pattern is split into numerous individual light-emitting diodes (LEDs) arranged in a grid or matrix that adapts to the surroundings in real-time. The lighting system is being evaluated by LRC researchers this June.

The LRC earlier studied adaptive high beams as part of a project for the 834 National Highway Traffic Safety Administration (NHTSA) that resulted in a report to Congress on nighttime glare and driving performance. Michael Perel, retired chief of the NHTSA Human Factors Division who initiated the project, said, “At that time, because of driver glare complaints and high nighttime crash rates, we wanted to investigate whether dynamically changing the forward light distribution in response to real-time road and traffic conditions could provide drivers with increased seeing distance without causing increased glare. The study did find potential benefits with this concept, variations of which are now being implemented by Audi and other manufacturers.”

LRC’s research for NHTSA demonstrated that forward visibility under adaptive high-beam systems was comparable to that under high beams, while disability and discomfort glare for oncoming drivers were comparable to levels experienced when facing low beams. The results of a recently published LRC study of driver visual performance suggest that nighttime crashes might be reduced up to seven per cent when adaptive high beams are used, relative to low-beam headlights.

Current requirements for vehicle forward lighting in the US specify the photometric performance of low- and high-beam headlight patterns, and vehicles are required to have a set of low-beam and a set of high-beam headlights conforming to these specifications. Adaptive high beams have not been used on vehicles in the US because the modifications to the high-beam beam pattern result in a pattern of illumination that does not conform with either the high- or the low-beam performance standards.

“Our expectation is that testing at Rensselaer of the Audi MatrixBeam system used in Europe will help ongoing standards development efforts in the US,” said Stephan Berlitz, head of Development, Lighting Functions and Innovations at Audi. “We believe the introduction of this technology in the US would be very well-received by customers, just as it has been in Europe and elsewhere, so we are happy to do all that we can to support standards and test procedure development for the US market.”

For more information on companies in this article

Related Content

  • Saving the smartphone zombies from themselves
    October 15, 2020
    As roads – particularly in cities – become busier, companies are fielding a steady trickle of products to keep pedestrians safe and vehicles flowing
  • WirelessCar partners with Audi in China
    December 12, 2013
    Connected services provider WirelessCar is to support Audi in China with call centre solutions, enabling location-based services, infotainment and information features WirelessCar works with the entire telematics network through a wide partner network of wireless providers, call centres, content providers, dealers, government institutions, and others to: explore leading industrial technology; positively get involved in industrial regulation and policies standardisation; and make continuous progress on bu
  • Conscience versus convenience
    June 8, 2015
    David Crawford looks at new ways forward for public transport. By 2025, nearly 60% of the world’s population will be living in towns and cities, increasing their extent and density, and the journeys that people make within and between them. In response, the International Association of Public Transport (UITP) wants to see public transport’s global modal share doubling (PTx2) by the same date. “Success in 2025,” a spokesperson told ITS International, “will save 170 million tonnes of oil equivalent and 550
  • Nissan to lead human driving style AV project in the UK
    February 2, 2018
    Nissan’s European Technical Centre will lead a 30-month Autonomous Vehicle trial on UK country roads, high speed roundabouts, A-Roads and motorways with live traffic and different environmental conditions. Called the HumanDrive project, it will also emulate a natural human driving style with the intention of providing an enhanced experience for its occupants. The artificial driver model that controls perception and decision making will pilot the vehicle, and will be developed using artificial intelligence