Skip to main content

Ford equips autonomous cars with night vision

Ford recently conducted tests at its Arizona proving ground to determine how autonomous cars could navigate at night without headlights. According to Ford, it’s an important development, in that it shows that even without cameras, which rely on light, Ford’s LiDAR, working with the car’s virtual driver software, is robust enough to steer around winding roads. While it’s ideal to have all three modes of sensors, radar, cameras and LiDAR, the latter can function independently on roads without stoplights.
April 13, 2016 Read time: 2 mins
278 Ford recently conducted tests at its Arizona proving ground to determine how autonomous cars could navigate at night without headlights.

According to Ford, it’s an important development, in that it shows that even without cameras, which rely on light, Ford’s LiDAR, working with the car’s virtual driver software, is robust enough to steer around winding roads. While it’s ideal to have all three modes of sensors, radar, cameras and LiDAR, the latter can function independently on roads without stoplights.

To navigate in the dark, Ford self-driving cars use high-resolution 3D maps, complete with information about the road, road markings, geography, topography and landmarks like signs, buildings and trees. The vehicle uses LiDAR pulses to pinpoint itself on the map in real time. Additional data from radar gets fused with that of LiDAR to complete the full sensing capability of the autonomous vehicle.

For the desert test, Ford engineers, wearing night-vision goggles, monitored the Fusion from inside and outside the vehicle. Night vision allowed them to see the LiDAR doing its job in the form of a grid of infrared laser beams projected around the vehicle as it drove past. LiDAR sensors shoot out 2.8 million laser pulses a second to precisely scan the surrounding environment.

Wayne Williams, a Ford research scientist and engineer was in the car following it’s progression in real time using computer monitoring. He claims it stayed precisely on track along the winding roads.

“Thanks to LiDAR, the test cars aren’t reliant on the sun shining, nor cameras detecting painted white lines on the asphalt,” says Jim McBride, Ford technical leader for autonomous vehicles. “In fact, LiDAR allows autonomous cars to drive just as well in the dark as they do in the light of day.”

For more information on companies in this article

Related Content

  • Radar effective as detection tool for hard shoulder running
    July 23, 2012
    Navtech Radar's millimetric-wave systems are being researched on the M42 in England to look into how this type of detector can assist in the opening of the hard shoulder as an additional running lane. Here, the company's Stephen Clark talks about the technology being used. In England, the Highways Agency's (the HA, an executive agency of the Department for Transport) Managed Motorways system - formerly called Active Traffic Management - uses electronic signs and signals mounted on gantries to direct drivers
  • Platooning with Ease on the I-70
    July 15, 2025
    What would happen to truck platooning - a nascent technology - if the weather turns nasty? The I-70 Truck Automation Corridor Project in the northern US should provide some answers, reports David Arminas…
  • Septentrio demos AV localisation tech
    October 11, 2019
    Septentrio provided GPS/global navigation satellite system (GNSS) technology for computer vision supplier Artisense’s Visual Inertial Navigation System (VINS).
  • Swiss approval for Redflex
    September 19, 2014
    RedflexRed-radar, Redflex’s innovative fixed traffic enforcement solution has received type approval from the Traffic, Acoustics and Vibration sector at the Federal Institute of Metrology (METAS) in Switzerland. RedflexRed-radar is a fixed traffic enforcement solution, utilising proprietary Redflex non-intrusive mapping radar technology with high resolution cameras to detect and photograph intersection red light and speed offences across up to six lanes of traffic. The proprietary Redflex phase monopulse