Skip to main content

Driver assistance with stereo vision sensing system

A new stereo vision sensing (SVS) system developed by automotive safety systems supplier Autoliv will, says the company, help vehicle manufacturers meet the new test criteria that EuroNCAP recently announced to promote autonomous emergency braking, intelligent speed assist, lane departure assists and pedestrian protection. The system has a field of view of 50 degrees and can recognise objects within 120 metres. To provide the best view, the stereo vision cameras are mounted high on the front windshield behi
May 14, 2013 Read time: 2 mins
A new stereo vision sensing (SVS) system developed by automotive safety systems supplier 4171 Autoliv will, says the company, help vehicle manufacturers meet the new test criteria that EuroNCAP recently announced to promote autonomous emergency braking, intelligent speed assist, lane departure assists and pedestrian protection.

The system has a field of view of 50 degrees and can recognise objects within 120 metres. To provide the best view, the stereo vision cameras are mounted high on the front windshield behind the rear view mirror.

Autoliv’s new system will provide autonomous emergency braking, intelligent speed assist, road/lane departure warning and pedestrian protection, which is proposed to be included in EurNCAP’s star rating of new vehicles from 2017.   The system can also provide adaptive cruise control, queue assist, light source recognition to automatically control the headlights to avoid blinding oncoming traffic and road surface monitoring to automatically adjust the suspension ahead of uneven road surfaces.

The SVS also provides four additional applications. By adding another camera in tandem with the first, the system can provide a three dimensional view of the area in front of a vehicle, enabling the system to calculate the distance to different objects in front of the vehicle and determine the shape and the size of them. The system will calculate the direction and speed of objects moving closer to the vehicle and is able to predict if, for example, a pedestrian is at risk and warn the driver or brake the car.

For more information on companies in this article

Related Content

  • Cepton Lidars deployed in Austria
    February 26, 2021
    Partnership with local test alliance ALP.Lab will create real-life, complex traffic data
  • In the blink of slowing eye
    February 23, 2015
    The world’s ageing population requires more attention to be paid to the needs of older, and sometimes not that old, drivers – particularly when it comes to lighting. For instance the minimum amount of light a person needs to see doubles every decade after they are 25, so a 75-year old may need 32 times the illumination level as somebody a third of their age. It would seem logical that street lighting and car designers would consider their work from other road users’ point of view but empirical evidence appe
  • Video analytics enhances urban rail safety
    December 16, 2016
    David Crawford explores some promising innovations for North American commuters. North America is experiencing a surge in commuter rail and metro development. The US now has 75 light rail and metro networks in operation; and California, in particular, is actively exploring ways of developing the state’s existing passenger rail operations into a fully integrated system.
  • Autonomous driving – what can we really expect?
    June 6, 2016
    Dave Marples of Technolution BV looks beyond the hype to the practical implementation of autonomous vehicles. Having looked at the development of this sector for some time, I am concerned about the current state of autonomous driving development as engineering (and marketing) have run way ahead of the wider systemic, and legislative, requirements to support an autonomous future.