Skip to main content

Intel outlines AV limits of perception

CES 2021: Intel boss Amnon Shashua suggests radar and Lidar as redundant add-ons
By Ben Spencer January 12, 2021 Read time: 2 mins
Shashua: 'You have to be 1,000 times better than these statistics'

What is an acceptable failure rate of a vehicle's perception system?

And how does this influence the development and regulation of autonomous vehicles (AVs)?

These were among the key areas covered by Professor Amnon Shashua, senior vice president of Intel and chief executive officer of Mobileye at this week's CES 2021 event.

In an online session, Shashua revealed the company measures failure rate in terms of hours of driving. 

“If we google, we will find out that about 3.2 trillion miles a year in the US are being travelled by cars and there are about six million crashes a year,” he said.

“So divide one by another, you get: every 500,000 miles on average there is a crash.”

“Let's assume that 50% it's your fault in a crash, so let's make this one million and let's divide this by 20 miles per hour on average, so we get about once every 50,000 hours of driving we'll have a crash,” he added. 

Shashua then applied this level of performance to a scenario involving a robotic machine and the deployment of 50,000 cars. 

“It would mean that every hour on average, will have an accident that is our fault because it’s a failure of the perception system,” he continued.

“From a business perspective this not sustainable, and from a society perspective, I don't see regulators approving something like this so you have to be 1,000 times better than these statistics.”

Mobileye is acutely aware of this, having just announced it will be testing AVs in new cities this year: Detroit, Tokyo, Shanghai, Paris and (pending regulation) New York City.

From a technological point of view, Shashua insisted it is “so crucial to do the hard work” and not combine all the sensors at the beginning and carry out a “low-level fusion – which is easy to do”.

“Forget about the radars and Lidars, solve the difficult problem of doing an end-to-end, standalone, self-contained camera-only system and then add the radars and Lidars as a redundant add-on,” he concluded. 

For more information on companies in this article

Related Content

  • Lindsay zips-up lane closure solution
    May 11, 2017
    Moveable barrier systems are offering engineers a new traffic management options. Work zones - be they for maintenance or road widening - are a fact of life and when they occur on major highways, they create no end of problems for traffic planners and travellers alike.
  • C-ITS in Europe: From vision to reality
    September 18, 2024
    While improved safety is the main aim of Europe’s emerging C-ITS network, it is not the only one. Lessons are being learned and functionality is expanding. Andrew Stone reports on progress…
  • Debating road user charging systems
    January 26, 2012
    Are pre-launch trials of charging systems the way to improve public acceptance? Or is the real key a more robust political attitude? Here, leading system suppliers discuss the issue. The use of distance-based Road User Charging (RUC) is now well established, at least for heavy goods vehicles on strategic roads. However demand management for all vehicles, whether a distance-based charge or some form of cordon scheme, has yet to make significant progress. This is in spite of the logic and equity of RUC being
  • Monitoring, detection and control systems inside tunnels can do much to improve traveller safety
    August 6, 2013
    ITS technology can do a great deal to improve tunnel safety, as Colin Sowman discovers. It was back in April 2004 that the European Parliament adopted the EU Directive which lays down the Minimum Safety Requirements for Tunnels in the Trans-European Road Network (2004/54/EC). This was the first unitary legislation setting minimum safety standards for European road tunnels and was designed to harmonise the management of tunnel safety at a national level. Operators of existing tunnels have until 30 April 201