Skip to main content

Hackers can fool self-driving car sensors into evasive action

The laser ranging (LIDAR) systems that most self-driving cars rely on to sense obstacles can be hacked by a setup costing just US$60, a security researcher has told IEEE spectrum. According to Jonathan Petit, principal scientist at software security company Security Innovation, he can take echoes of a fake car, pedestrian or wall and put them in any location. Using such a system, which he designed using a low-power laser and pulse generator, attackers could trick a self-driving car into thinking somethin
September 8, 2015 Read time: 2 mins
The laser ranging (LIDAR) systems that most self-driving cars rely on to sense obstacles can be hacked by a setup costing just US$60, a security researcher has told 6781 IEEE spectrum.

According to Jonathan Petit, principal scientist at software security company Security Innovation, he can take echoes of a fake car, pedestrian or wall and put them in any location. Using such a system, which he designed using a low-power laser and pulse generator, attackers could trick a self-driving car into thinking something is directly ahead of it, forcing it to slow down.

In a paper written while he was a research fellow in the University of Cork’s Computer Security Group and due to be presented at the Black Hat Europe security conference in November, Petit describes the system he built with off the shelf components that can create the illusion of an obstacle anywhere from 20 to 350 metres from the LIDAR unit and make multiple copies of the simulated obstacles, and even make them move.

While the short-range radars used by many self-driving cars for navigation operate in a frequency band requiring licencing, LIDAR systems use easily-mimicked pulses of laser light to build up a 3-D picture of the car’s surroundings and were ripe for attack.

“I can spoof thousands of objects and basically carry out a denial of service attack on the tracking system so it’s not able to track real objects,” Petit told IEEE spectrum. I don’t think any of the LIDAR manufacturers have thought about this or tried this.”

Related Content

  • July 1, 2021
    Next-gen sensor needs for safer, smarter cities
    Next-generation radar sensor solutions will help smart cities deliver on the promise of optimising infrastructure, mobility, sustainability and safety, says Econolite CTO Eric Raamot
  • July 17, 2012
    Cloud computing technology benefits GIS
    Geographic Information Systems are a relatively late adopter of cloud computing,but the benefits of host services for geospatial data and analysis are becoming clear. Jason Barnes reports Both the concept and the reality of cloud computing have been around for some time. More and more industry sectors are entrusting external service providers with the provision of their computing services via the internet. However, the Geographic Information System (GIS) industry has been slow to embrace the trend. This is
  • December 14, 2012
    Preparing for connected vehicle technology challenge
    A decision on mandating connected vehicle technology is expected in 2013, when associated political issues such as privacy are likely to come to the fore. Pete Goldin investigates industry’s preparations for the challenge. Once in a while new technology comes along with the power to revolutionise the way we live our lives. Connected vehicle technology could be such a game changer. If mandated in the United States, it could quickly become the status quo for transportation in the US, and such a disruptive cha
  • February 1, 2012
    Need for harmonisation in ITS standards
    As the calendar rolls over, and we hop from continent to continent and World Congress to World Congress, where Memoranda of Understanding and cooperation agreements are the headline news, it is easy for those not intimately involved to forget that standards definition is a well-nigh continual process. Significant progress has been made in recent months towards achieving the critical mass and economies of scale which are going to drive development and deployment in, amongst other things, cooperative infrastr