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

  • Solar-powered traffic detection improves communication
    January 31, 2012
    Pete Goldin reports on a new wireless, solar-powered traffic detection system being used by Caltrans District 12. As more and more traffic data is necessary to satisfy the needs of traffic management centres and traveller information systems, and as traffic detection technology becomes more ubiquitous, transportation authorities are pressured to find more economical ways of expanding their detection systems. Caltrans District 12 is leading this push by deploying the latest detection system from Case Global
  • Topcon and Vodafone position themselves
    September 12, 2022
    New precise positioning service will be more accurate than individual GNSS, firms say
  • Car to car communications a step closer
    December 14, 2012
    Vehicle manufacturers have targeted 2015 for the first cars to roll off European assembly lines fitted with operational V2X technology. They and their partners in the Car 2 Car Communications Consortium are confident of meeting the target, reports Jon Masters. Around three years from now vehicles should be appearing in showrooms boasting the capability of communicating with each other. Manufacturers will have started fitting the first proprietary car-to-car driver-aid safety devices and deployment of ‘vehic
  • Alliance stages North American back office interoperability trial
    December 4, 2013
    JJ Eden, President and CEO of the Alliance for Toll Interoperability, talks to Jason Barnes about the new inter-agency hub, which will facilitate national transactions When it comes to achieving interoperability, the sheer diversity of technologies in operation in the US is perhaps the tolling industry’s greatest defining characteristic and its biggest challenge. The situation is in stark contrast with some other regions of the world, such as Europe where the use of common front-end Dedicated Short-Range