Skip to main content

Volvo Cars developing kangaroo detection system

Volvo Cars is developing kangaroo detection technology to solve one of the most costly causes of traffic collisions in Australia. A team of Volvo Cars safety experts is in the Australian Capital Territory to film and study the roadside behaviour of kangaroos in their natural habitat. The data Volvo Cars collects will be used to develop the first ever kangaroo detection and collision avoidance system. According to the National Roads & Motorists’ Association (NRMA) there are over 20,000 kangaroo strikes on A
November 5, 2015 Read time: 2 mins
7192 Volvo Cars is developing kangaroo detection technology to solve one of the most costly causes of traffic collisions in Australia.  A team of Volvo Cars safety experts is in the Australian Capital Territory to film and study the roadside behaviour of kangaroos in their natural habitat. The data Volvo Cars collects will be used to develop the first ever kangaroo detection and collision avoidance system.

According to the National Roads & Motorists’ Association (NRMA) there are over 20,000 kangaroo strikes on Australian roads each year, costing over AU$75 million in insurance claims. The human cost of serious injuries and fatalities from animal collisions is incalculable.

To help address this Volvo Cars is developing a unique system that uses radar and camera technology to detect kangaroos and automatically apply the brakes if an accident is imminent.

The technology behind this research is an evolution of Volvo’s City Safety which detects cars, cyclists and pedestrians day and night.

A radar sensor in the grille scans the road ahead to detect moving objects, while a very advanced light-sensitive, high-resolution camera in the windscreen works in parallel with the radar to detect which way the object is moving and help the computer decide what action to take, if any.
 
When the object is detected, it takes 0.05 seconds for the computer system to react on the situation. This should be compared with the human reaction time of about 1.2 seconds.

“While Volvo Cars’ pedestrian detection technology is geared towards city driving, our kangaroo detection research is focusing on highway speed situations,” said Martin Magnusson, senior safety engineer at Volvo Cars. “Kangaroos are very unpredictable animals and difficult to avoid, but we are confident we can refine our technology to detect them and avoid collisions on the highway.

“In Sweden we have done research involving larger, slower moving animals like moose, reindeer and cows which are a serious threat on our roads. Kangaroos are smaller than these animals and their behaviour is more erratic. This is why it’s important that we test and calibrate our technology on real kangaroos in their natural environment.”

Related Content

  • May 10, 2023
    Scaling up road safety analysis with Aimsun cloud simulation
    Synthetic generation, execution, and analysis of thousands of road safety scenarios is exponentially more efficient and wider ranging than any methodology based on field data. Marcel Sala & Jordi Casas of Aimsun examine the benefits of cloud simulation for safety testing
  • May 16, 2014
    UR:BAN developing driver assistance and traffic management systems
    European vehicle manufacturers, including BMW, Opel and Mercedes-Benz and MAN, are taking part in a new project to develop advanced driver assistance and traffic management systems for cities. The focus is on the human element in all aspects of mobility and traffic and takes the form of three approaches: Cognitive Assistance; Networked Traffic Systems; and Human Factors in Traffic. The four-year UR:BAN project (from a German acronym for Urban Space: User-oriented assistance systems and network managemen
  • October 17, 2019
    Getting C/AVs from pipedream to reality
    The UK government has suggested that driverless cars could be on the roads by 2021. But designers and engineers are grappling with a number of difficult issues, muses Chris Hayhurst of MathWorks Earlier this year, the UK government made the bold statement that by 2021, driverless cars will be on the UK’s roads. But is this an achievable reality? Driverless technology already has its use cases on our roads, with levels of autonomy ranked on a scale. At one end of the spectrum, level 1 is defined by th
  • March 3, 2022
    Lidar: eyes wide open
    Lidar is on the cusp of becoming an indispensable part of transportation infrastructure worldwide. Itai Dadon of Ouster takes a high-level overview of the technology and its applications in ITS