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.

Related Content

  • Land Rover demonstrates remote-control Range Rover Sport
    June 18, 2015
    Jaguar Land Rover, part of the UK Autodrive consortium, has demonstrated a remote control Range Rover Sport research vehicle, showing how a driver could drive the vehicle from outside the car via their smartphone. The smartphone app includes control of steering, accelerator and brakes as well as changing from high and low range. This would allow the driver to walk alongside the car, at a maximum speed of 4mph, to manoeuvre their car out of challenging situations safely, or even to negotiate difficult off
  • Toyota trials Next Generation Vehicle Infrastructure Co-operation Service
    October 24, 2012
    Toyota is trialling a new driver information system which, if successful, could start to appear in Japanese cities around 2015. Trials started in March this year. The Next Generation Vehicle Infrastructure Co-operation Service consists of sensors mounted on city streets that communicate with vehicles by radio. Vehicles would require an onboard unit to receive the data. The information is particularly designed to help drivers in crowded urban streets whose visibility is obscured by large vehicles such as
  • Plug-and-play anti-collision technologies for everyone
    March 6, 2014
    With an eye on the autonomous vehicle market, Soterea, a new high-tech firm in New Jersey, US, is developing plug-and-play anti-collision technologies that can make new and used vehicles safer, thereby helping to further evolve the critical element necessary to make driverless vehicles commercially viable. Soterea is the brainchild of two transportation technology experts, Eva Lerner-Lam and Alain L Kornhauser, each with more than four decades of experience in developing next generation technologies for
  • Nav system compatible with V2I developed by Toyota
    April 23, 2012
    Toyota Motor Corporation (TMC) has developed an onboard navigation system compatible with the vehicle-infrastructure cooperative Driving Safety Support System (DSSS) scheduled for launch by the Japanese National Police Agency in Japan next month. The five main features of the new system, which provides timely audio and visual warnings and notifications to drivers, are red light warning, stop sign warning, stationary vehicle ahead warning, blind corner vehicle presence notification, and green light advance n