Skip to main content

GSSI partners with MIT Lincoln Laboratory to develop LGPR for autonomous vehicles

US-based Geophysical Survey Systems (GSSI), manufacturer of ground penetrating radar (GPR) equipment, has entered into a licensing agreement with Massachusetts Institute of technology (MIT) Lincoln Laboratory to build and sell commercial prototypes of their localised ground penetrating radar (LGPR) system, which helps autonomous vehicles navigate by using subsurface geology. The partnership will make prototype systems available to the self-driving vehicle industry.
September 11, 2017 Read time: 2 mins
US-based Geophysical Survey Systems (GSSI), manufacturer of ground penetrating radar (GPR) equipment, has entered into a licensing agreement with 2024 Massachusetts Institute of technology (MIT) Lincoln Laboratory to build and sell commercial prototypes of their localised ground penetrating radar (LGPR) system, which helps autonomous vehicles navigate by using subsurface geology. The partnership will make prototype systems available to the self-driving vehicle industry.

 
The agreement builds on GSSI’s new engineering initiative, which focuses on using GPR to solve difficult problems that cannot be solved with any other technologies. Led by newly appointed Vice President of Research and Development, David Cist, an expert engineering team is focusing on commercialising the new technology.
 
Engineers at MIT Lincoln Laboratory, who developed LGPR, have demonstrated that features in soil layers, rocks, and road bedding can be used to localize vehicles to centimetre-level accuracy. The LGPR technology has been tested for lane keeping even when snow, fog, or dust obscures above-ground features.
 
The LGPR sensor uses high-frequency radar reflections of underground features to generate a baseline map of a road's subsurface. Whenever an LGPR vehicle drives along a road, the data can be used as a reference map. On subsequent passes the LGPR equipped vehicle compares its current map against the reference map to create an estimate of the vehicle's location. This localisation has been demonstrated to be accurate to within a few centimetres, in real-time and at highway speeds, even at night in snow-storms.

For more information on companies in this article

Related Content

  • Security in the spotlight at Intelligent Security Systems
    March 21, 2018
    Intelligent Security Systems, a new exhibitor at Intertraffic, is featuring three key innovations on its stand: an under-vehicle surveillance system, an all-in-one speed and ANPR camera and an IP based camera designed for licence plate recognition. SecurOS Flatmus, the under-vehicle surveillance system, comprises of a fish-eye camera mounted in a plate which in turn is set into the roadway (possibly in a speed hump) on the approach to a gated entrance. As the vehicle approaches, ANPR detects the vehicle
  • Mobileye to pull out of FMCW Lidar development
    September 17, 2024
    Closing Lidar R&D unit by the end of this year will affect about 100 employees
  • Transport problems need ''strong action from policymakers”
    June 7, 2012
    Taking advantage of the attendance of the heads of ITS Asia-Pacific, ITS America, Ertico – ITS Europe, and ITS Malaysia as the host nation of the recent 12th ITS Asia-Pacific Forum in Kuala Lumpur in April, ITS International initiated a round table discussion on the big ITS issues confronting the individual regions. For such a diverse collection of advanced and emerging nations spanning the globe, in terms of the advancement of ITS, a common single issue emerges above all others
  • Cut freight deliveries – improve Southampton’s air quality
    November 23, 2018
    Taking the pressure off cities’ road networks can have a beneficial effect on the environment. David Crawford looks at a new economic model which seeks to quantify the societal effect of freight traffic in Southampton, one of the UK’s five most polluted cities Cuts of 60% or more in volumes of freight deliveries are being predicted - along with badly-needed improvements in air quality - from a load consolidation scheme currently being introduced in the UK port city of Southampton. The forecasts are based o