Skip to main content

Waymo redesigns fifth generation hardware sensor suite

Waymo has redesigned its fifth-generation hardware sensor suite with the aim of enabling the scaled deployment of Waymo Driver autonomous vehicles (AVs).
By Ben Spencer March 16, 2020 Read time: 2 mins
Waymo's self-driving Jaguar I-Pace electric SUV 1 (Source: Waymo)

In a blog post, Satish Jeyachandran, head of hardware at Waymo, says the new 360 Lidar system provides a bird's-eye view of the cars, cyclists and pedestrians surrounding the vehicle. It allows Waymo Driver to navigate the complexities of city driving by distinguishing the opening of a car door a city block away while also allowing its trucks to spot debris hundreds of metres ahead on the highway, he adds.
 
Perimeter Lidars are now placed at four points around the sides of the vehicle to help it navigate tight gaps in city traffic and cover potential blind spots on hilly terrain.
 
According to Jeyachandran, long range cameras and a 360 vision system identify pedestrians and stop signs greater than 500m away.
 
Additionally, a perimeter vision system is expected to work in conjunction with its perimeter Lidars to give Waymo Driver another perspective of objects close to the vehicle.
 
“For example, while our perimeter Lidars detect obstacles directly in front of the vehicle with precision, our perimeter cameras provide our machine learning algorithms additional details to reliably identify objects, providing more context to the traffic scene,” Jeyachandran explains.
 
He claims that a peripheral vision system allows Waymo to ‘peek’ around a truck driving in front to determine whether it is safe to overtake or wait.
 
Waymo has also redesigned the architecture, outputs and signal processing capabilities of the hardware sensor suite to create an “imaging radar system for self-driving”.
 
“Our next-generation radar can also see objects at great distances, including detecting a motorcyclist from hundreds of metres away,” he continues. “Like with our other long-range sensors, being able to accurately detect objects at greater distances gives us a longer reaction time to make a more comfortable experience for our riders.”
 
The company has integrated its new generation of sensors on its Jaguar I-PACE vehicle.
 
“With the first of these new vehicles, we’ve completed comprehensive module-level and system-level tests to ensure our next-generation hardware can withstand whatever the roads throw at it - from stormy weather and salted roads, to extreme heat and dirt storms,” Jeyachandran concludes.

 

Related Content

  • March 18, 2014
    Vehicle mounted camera detects pedestrians, aids safety
    The Blaxtair construction machine-mounted vision-based alert system distinguishes pedestrians from other objects, providing a visual/audible alarm to both driver and pedestrian when a person is in a position of danger. The intelligent camera system, from French company Arcure, is an obstacle detection device and pedestrian recognition equipment. It is capable of detecting all types of obstacles, locating them precisely with respect to the machine and determining whether an obstacle is a pedestrian or not.
  • June 5, 2014
    TRW showcases driver assist systems
    TRW Automotive demonstrated its driver assist systems (DAS) and outlined expected trends in sensor technologies during the company's recent bi-annual Ride and Drive event at the Hockenheimring in Germany. According to Andrew Whydell, TRW Electronics’ director of product planning, DAS has and will continue to be a focal point for the automotive industry as governments and industry bodies strive to reduce road fatalities worldwide. For example, the European New Car Assessment Program (EuroNCAP) and the Ins
  • November 11, 2021
    Innoviz Lidar targets V2X in China
    Combined tech tie-up with JeuFX is expected to help sensors with obstacle detection
  • September 16, 2016
    LeddarTech unveils LiDAR IC roadmap towards autonomous driving
    Canadian LiDAR specialist LeddarTech has unveiled its LeddarCore IC roadmap which aims to enable low-cost, high-performance solid-state LiDARs for multiple automotive safety applications, from advanced driver assistance systems (ADAS) to autonomous driving.