Skip to main content

Subaru debuts improved driver assistance systems

The latest EyeSight driver assistance system from Subaru of America now features colour stereo cameras that deliver an approximately 40 per cent longer and wider detection range, brake light detection and can now fully function when the speed differential between the Eyesight equipped car and another vehicle is up to 30 mph. EyeSight is mounted inside the car on the upper edge of the windshield in a housing that has been made 15 per cent smaller. The EyeSight system processes stereo images to identify t
January 24, 2014 Read time: 2 mins
RSSThe latest EyeSight driver assistance system from 7994 Subaru of America now features colour stereo cameras that deliver an approximately 40 per cent longer and wider detection range, brake light detection and can now fully function when the speed differential between the Eyesight equipped car and another vehicle is up to 30 mph.

EyeSight is mounted inside the car on the upper edge of the windshield in a housing that has been made 15 per cent smaller. The EyeSight system processes stereo images to identify the vehicles travelling in front, as well as obstacles and traffic lanes. The video information is relayed to the EyeSight computer, which is also networked with the car's braking system and electronic accelerator control. EyeSight is also capable of detecting pedestrians in the vehicle's path and can activate in order to mitigate or even avoid the collision.

The system integrates adaptive cruise control, pre-collision braking and vehicle lane departure warning. At relative speeds under 30 mph, EyeSight's pre-collision braking system can detect vehicles in the car's path and, if the driver has not applied the brake, the system can do so to slow the vehicle or bring it to a full stop to help avoid the potential collision.

Lane departure warning monitors traffic lane markers and lines and can detect if the car begins to wander outside the intended lane without a turn signal being used, or begins to sway within the travel lane.

Adaptive cruise control, intended for freeway use, can maintain a safe distance from the vehicle in front, braking or accelerating the car to maintain the driver-selected target speed and travelling distance. The system can fully bring the vehicle to a stop if it locks on to a vehicle ahead and assists the driver in stop-go traffic by maintaining a safe distance.

Also debuting in Subaru models later this year are three additional technologies; blind spot detection, lane change assist and rear cross traffic alert, which will be introduced on Subaru's product line up starting in 2014.

For more information on companies in this article

Related Content

  • Next generation pay-on-foot parking for Lancashire hospital
    August 13, 2014
    Parking equipment manufacturer WPS, part of Imtech Traffic & Infra, has installed a new generation of pay-on-foot parking management technology on behalf of Vinci Facilities at St Helens Hospital, Lancashire, to improve the visitor and staff car parking experience and to help create a more sustainable, user-friendly parking regime.
  • Germany is Mad for Vitronic
    April 30, 2025
    Managed Automated Driving project takes place in German city of Brunswick
  • Bronx benefits from mesoscopic-microscopic modelling
    January 7, 2014
    Michael Marsico, Andrew Weeks, Keir Opie and Murat Ayçin explain the application of hybrid traffic simulation to a planning study in New York City. Traffic modelling, particularly mesoscopic-microscopic hybrid simulation, has played a key role in planning for the future of one of America's shortest interstates, the 1.3-mile Sheridan Expressway. New York City has just completed a two-year, interagency study federally funded by a TIGER II grant on how to improve the Sheridan Expressway and its surroundi
  • Vehicle identification systems aid dynamic bus operations
    April 24, 2013
    David Crawford looks at a global trend towards more efficiency in less space As buses gain increased profile in the public transport mix needed for modal shift, attention is turning towards improving terminal layouts for more efficient handling of services and passengers. Locations, too, tend to be in central areas of cities, where sites are restricted and land values high. Enter the dynamic bus station, which uses modern vehicle identification systems to optimise space use and streamline service operation