Skip to main content

Next generation safety technologies from Toyota

Toyota has revealed two new integrated safety systems designed to reduce the risk of pedestrian collisions and deliver safer driving in traffic, both of which will be brought to market in the next few years. Its auto-steering function for its pre-collision system (PCS) works in conjunction with automatic braking to help the driver avoid an impact, while its automated highway driving assist (AHDA) system keeps the car on an optimum driving line and a safe distance from the vehicle in front.
October 14, 2013 Read time: 3 mins
1686 Toyota has revealed two new integrated safety systems designed to reduce the risk of pedestrian collisions and deliver safer driving in traffic, both of which will be brought to market in the next few years.

Its auto-steering function for its pre-collision system (PCS) works in conjunction with automatic braking to help the driver avoid an impact, while its automated highway driving assist (AHDA) system keeps the car on an optimum driving line and a safe distance from the vehicle in front.

PCS uses an on-board sensor to detect a pedestrian in the vehicle's path. If it determines there is a collision risk, it triggers a warning light on the dashboard, immediately in front of the driver; if the likelihood of an impact increases, it sounds an alarm to warn the driver to take avoiding action and initiates pre-collision braking force and automatic braking.

If the system detects that a collision cannot be avoided by braking alone, and there is sufficient room for avoidance, it activates steer assist to direct the vehicle away from the pedestrian.

The AHDA system links two driving technologies to help secure safer driving and reduce the workload on the driver: co-operative-adaptive cruise control, which communicates wirelessly with vehicles ahead to maintain a safe distance; and lane trace control, which helps steer the vehicle on an optimal driving line within a traffic lane.

Co-operative adaptive cruise control uses 700-Mhz band vehicle-to-vehicle ITS communications to acquire acceleration and deceleration data from the vehicle ahead. This allows the speed of the following vehicle to be adjusted accordingly and better maintain an appropriate distance. By reducing unnecessary acceleration and deceleration, it improves fuel efficiency and helps reduce traffic congestions.

Lane trace control features brand new Toyota automated driving technologies. It uses high-performance cameras, millimetre-wave radar and control software to keep an optimum, smooth driving line within a traffic lane at all speeds, adjusting the vehicle's steering angle, driving torque and braking force when needed.

Ahead of trials on the Shuto Expressway near the Tokyo metropolitan area starting on 15 October, Toyota will exhibit AHDA at the 20th Intelligent Transport Systems World Congress Tokyo 2013 from 14 to 18 October.

To bring its new driving support systems to market as soon as practicable, Toyota is making use of new component technologies and know how gained through road testing using its advanced active safety research vehicle, based on a 4349 Lexus LS, unveiled last January at the International CES electronics show in Nevada.

For more information on companies in this article

Related Content

  • Low-costs solutions to improve pedestrian safety
    May 8, 2015
    David Crawford welcomes low-cost safety initiatives for pedestrians in America. Some 10 people die each week in accidents on crosswalks in the US, that’s more than 10% of all pedestrian fatalities in road traffic incidents - the number of which is running at a five-year high. Ensuring crosswalks are safe is key in supporting the growing enthusiasm for walking as a travel mode. In the last decade of the 20th century, numbers walking to work in the US fell by 26%; while, as recently as 2012, Americans were e
  • Self-driving cars ‘a US$87 billion opportunity in 2030’
    May 22, 2014
    The latest research from Lux Research indicates that automakers and technology developers are closer than ever to bringing self-driving cars to market, with basic Level 2 autonomous behaviour already coming to market, in the form of relatively modest self-driving features like adaptive cruise control, lane departure warning, and collision avoidance braking. With these initial steps, automakers are already on the road to some level of autonomy, but costs remain high in many cases. It is the higher levels
  • Newcastle rush-hour traffic trials get the go-ahead
    February 15, 2013
    Traffic trials aimed at streamlining the rush-hour commute in the UK’s north-east have been given the green light. The project in Newcastle involves new satellite navigation technology which helps drivers adjust their speed so they can pass through a series of lights on green. The European project is being led by Newcastle University and Newcastle City Council, and aims to reduce city centre congestion and pollution associated with stop-start driving. Phil Blythe, Professor of Intelligent Transport Systems
  • Partially automated cars ‘provide financial and safety benefits’
    July 19, 2016
    Carnegie Mellon College of Engineering researchers in the US have concluded that the public could derive economic and social benefits today if safety-oriented, partially automated vehicle technologies were deployed in all cars. The researchers examined forward collision warning, lane departure warning and blind spot monitoring systems. These technologies can include partially autonomous braking or controls to help vehicles avoid crashes. Chris T. Hendrickson, director of the Carnegie Mellon Traffic21 In