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.
Data
November 6, 2019
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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.
The latest agenda for the FIA Region 1 conference, Driving Change, Connecting Mobility, which takes place in Brussels on 20 October, is now available on the conference website. Participants can hear from keynote speaker Pascal Smet, Minister for Mobility and Public Works in the Brussels Region and join in two debates with mobility experts, moderated by Jack Short, the former Secretary General of the International Transport Forum.
France’s Citilog and Signal Group of the US yesterday signed a ‘strategic alliance’ to combine their technologies, with the aim of delivering advanced ITS video analytics solutions to the North American market. Citilog will combine its capabilities in video analytics with Signal Group’s expertise in traffic controllers, with the first product designed to reduce traffic waiting times at intersections through the integration of real-time queue length calculation into adaptive intersection control.
Cross-border C-ITS-enabled roads (C-roads) will start becoming a reality in 2019, with safety as the driver, according to AustriaTech/ITS Austria's Martin Bohm. He made the comment during a recent Brussels workshop run by the European ITS and C-roads platforms to assess results of road corridor pilots. The latter is a joint initiative by EU member states and road operators to test and implement C-ITS services for universal harmonisation and interoperability. We can, he continued, deploy systems
Several organisations are coming together in Detroit, US, to pilot a new tool to analyse mobility data for dockless bikes and scooters.
The aim is to allow urban authorities which work with dockless mobility providers to share and analyse trip data, including trip origins and destinations, neighbourhood availability, travel times and usage.
This should give them the chance to allocate street space to sustainable transportation, improve safety and provide more equal access to transport services.
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