Skip to main content

Daimler Buses introduces pedestrian recognition for buses

Daimler Buses is launching the new Active Brake Assist 4 (ABA 4) with pedestrian recognition which it says is the world's first emergency braking assistance system in a bus to automatically brake for pedestrians.
July 4, 2017 Read time: 2 mins

2069 Daimler Buses is launching the new Active Brake Assist 4 (ABA 4) with pedestrian recognition which it says is the world's first emergency braking assistance system in a bus to automatically brake for pedestrians.

The new warns the driver visually and audibly of any potential collision with pedestrians and at the same time automatically triggering partial braking. This gives the driver every opportunity to prevent a collision with a pedestrian: the driver can warn the pedestrian using the horn, initiate maximum full-stop braking or steer to avoid the collision.

Active Brake Assist 4 with pedestrian recognition is based on new-generation radar technology which also features in the latest 1685 Mercedes-Benz cars and trucks. The scanning multi-mode radar comprises long and short range radar systems.

The long range radar registers multi-track vehicles and stationary obstacles at a maximum distance of up to 250 m in a direct line in front of the coach, single-track vehicles such as bicycles at up to 160 m and pedestrians at up to 80 m. The short range radar has a maximum range of 70 m and is even able to recognise pedestrians and vehicles to the sides ahead of the coach.

ABA 4 will become available in the spring of 2018 for the Mercedes-Benz Tourismo. The Setra touring coaches, including the ComfortClass 500 and the TopClass 500, will also have ABA 4 on board. ABA 4 is available free of charge to customers selecting the popular autonomous intelligent cruise control option (ART), which provides the necessary radar technology for ABA 4.

UTC

Related Content

  • June 18, 2015
    Land Rover demonstrates remote-control Range Rover Sport
    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
  • October 27, 2016
    The downside of driverless vehicles
    Driverless cars will have a detrimental effect on congestion and security while the road safety benefits can be achieved sooner and cheaper using ADAS, argues Colin Sowman. Many Governments are consulting about the introduction of driverless vehicles and even running trials. As 70% or 80% of crashes are caused by human error, the promise of a crash-free future of driverless, self-driving or autonomous vehicles (call them what you will) is alluring, as are the claims of reduced congestion and lower emissions
  • January 5, 2016
    Machine vision takes ITS further than the eye can see
    Vitronic’s John Yalda looks at how machine vision has become an integral part of many ITS deployments and why it complements, rather than replaces, ANPR. New and conventional business concepts like online shopping and mail order business are becoming more established in the cultures of fast-growing economies and increasing the demand for flexibility in the freight transportation and logistics industry. Road transport has become the preferred infrastructure for freight forwarding and several studies predict
  • May 14, 2013
    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