NTSB: Uber’s AV in fatal crash ‘had software issues’
The US National Transportation Safety Board (NTSB) has found that an Uber autonomous vehicle which killed Elaine Herzberg last year had software flaws.
NTSB released a report which says the Volvo XC60’s autonomous system software classified the pedestrian as an unknown object and determined that an emergency braking manoeuvre was needed to mitigate the collision.
Uber confirmed that emergency braking manoeuvres must be carried out manually and the system is not designed to alert the driver.
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November 6, 2019
Read time: 2 mins
The US 5628 National Transportation Safety Board (NTSB) has found that an 8336 Uber autonomous vehicle which %$Linker: 2External<?xml version="1.0" encoding="utf-16"?><dictionary />000link-external killedfalsehttps://www.itsinternational.com/categories/utc/news/uber-ends-self-driving-programme-in-arizona/falsefalse%> Elaine Herzberg last year had software flaws.
NTSB released a %$Linker: 2External<?xml version="1.0" encoding="utf-16"?><dictionary />000link-external reportfalsehttps://dms.ntsb.gov/pubdms/search/hitlist.cfm?docketID=62978&CurrentPage=2&EndRow=30&StartRow=16&order=1&sort=0&TXTSEARCHT=falsefalse%> which says the 609 Volvo XC60’s autonomous system software classified the pedestrian as an unknown object and determined that an emergency braking manoeuvre was needed to mitigate the collision.
Uber confirmed that emergency braking manoeuvres must be carried out manually and the system is not designed to alert the driver.
Data retrieved from the autonomous system revealed that the vehicle operator engaged the steering wheel less than a second before impact while the vehicle was travelling at 39mph.
The NTSB reviewed Uber’s autonomous system cameras which revealed that Herzberg did not look in the direction of the vehicle just before impact.
An inward-facing video showed the vehicle operator glancing down toward the centre of the vehicle several times before the crash. A post-crash interview with NTSB investigators revealed that she was monitoring the autonomous system’s interface.
The NTSB is working with Uber, Volvo Cars and the 6576 Arizona Department of Transportation to compile a complete account of the crash.
Uber is not the only company whose AV trials have led to a fatality. Last year, a Tesla vehicle operating in %$Linker: 2External<?xml version="1.0" encoding="utf-16"?><dictionary />000link-external autopilotfalsehttps://www.itsinternational.com/categories/utc/news/tesla-car-crash-in-california-kills-driver-while-running-on-autopilot/falsefalse%> in California caught fire after crashing into a roadside barrier that killed the driver.
A report from legal expert Laura Thomas has claimed that there is a strong case for changing the law to combat dangerous cycling, which if implemented, would bring offences in line with dangerous driving. It ties in with the Department for Transport's Call for Evidence, which is seeking to address issues that cyclists and pedestrians face, or perceive when using the road infrastructure. Thomas said: “Overall, in my opinion, the present law on cycling is not sufficient. I suggest that an offence comprising
French engineering firm Parifex has developed a selection of non-intrusive roadside control tools to meet the needs of road and traffic authorities around the world which are being showcased at Intertraffic.
Visitors to the Peter Berghaus stand will see the result of continued development with the company’s ProTec family, resulting in its mobile crash barrier becoming a system.
Initially, Berghaus focused on developing and using mobile crash barriers made of steel. This was followed soon after by a clever combination of steel and concrete, resulting in the first ProTec crash barrier to be successfully tested to the European standard DIN EN13172.
Flir Traficon Academy’s latest webinar, How to Detect and Count Bicycles in Mixed Traffic, takes place on 28 May at 0730 CEST, 1330 CEST and 1830 CEST. The webinar will demonstrate the power of thermal imaging technology in making a distinction between cycles and other vehicles and explains in detail the functions and features of the detector.