Skip to main content

Mercedes to test autonomous vehicles at secure US Navy base

Mercedes-Benz is to begin testing its autonomous cars on a unique site in California, at the Contra Costa Transportation Authority Concord Naval Weapons Station (CNWS), the largest test bed site in the US. Since mid-September the company has also held an official licence, issued by California, to test self-driving vehicles on public roads. The additional testing opportunities provided by the CNWS site will enable the company to significantly expand the scope of its research activities. With a test ar
October 3, 2014 Read time: 2 mins
1685 Mercedes-Benz is to begin testing its autonomous cars on a unique site in California, at the Contra Costa Transportation Authority Concord Naval Weapons Station (CNWS), the largest test bed site in the US.

Since mid-September the company has also held an official licence, issued by California, to test self-driving vehicles on public roads. The additional testing opportunities provided by the CNWS site will enable the company to significantly expand the scope of its research activities.

With a test area covering 2,100 acres, the CNWS site is currently the largest and most secure test bed site in the US. It features a network of surfaced roads resembling an urban grid plan, making it an ideal location for testing autonomous vehicles in surroundings that are as close to real life as they can be. For security reasons the testing ground, which is operated by the US Navy in conjunction with the City of Concord and the Contra Costa County Transportation Authority, is not accessible to the public.

“We can use the test site in Concord, California to run simulation tests with self-driving vehicles in a secure way, including specific hazardous situations", explained Dr Axel Gern, head of autonomous driving at 5403 Mercedes-Benz Research and Development North America, Inc. (MBRDNA). "Taken in conjunction with the results of our test drives on public roads, these tests will help us with the ongoing development of our autonomous cars." He emphasised, however, that the focus of research continues to lie in tests undertaken in a real-life environment.

For more information on companies in this article

Related Content

  • EasyMile SDVs in trial services in California
    October 8, 2015
    The first intended deployment of shared driverless vehicles (SDVs) in America has been announced at Bordeaux by EasyMile. Its EZ10 SDV vehicle is designed to transport up to 12 people the ‘last mile’ to and from transport hubs in areas where cars are either off limits or where parking is limited. EasyMile is a joint venture between vehicle manufacturer Ligier and robotics specialist Robosoft, and its EZ10 is to be tested under an exclusive agreement with Californian-based GoMentum Station.
  • After two decades of research, ITS is getting into its stride
    June 4, 2015
    Colin Sowman gets the global view on how ITS has shaped the way we travel today and what will shape the way we travel tomorrow. Over the past two decades the scope and spread of intelligent transport systems has grown and diversified to encompass all modes of travel while at the same time integrating and consolidating. Two decades ago the idea of detecting cyclists or pedestrians may have been considered impossible and why would you want to do that anyway? Today cyclists can account for a significant propor
  • Driverless vehicles will cause changes in society
    May 31, 2013
    Paul Godsmark gives his views on what the advent of autonomous vehicles would mean for the wider society. Further to your article ‘Driver not required…’ in the Jan/Feb edition of ITS International which gave some great background to autonomous road vehicle (ARVs), I feel that the bigger picture is needed to aid understanding. There is a ‘technology freight train’ heading our way that is going to transform our roadways but we don’t seem to be aware of it and, therefore, are in no hurry to react.
  • U-M offers open-access automated cars to advance driverless research
    November 22, 2016
    The University of Michigan (U-M) is offering use of its new research vehicles as test beds for academic and industry researchers to test self-driving and connected vehicle technologies at its proving ground. These open connected and automated research vehicles, or open CAVs, are equipped with sensors including radar, lidar and cameras, among other features and will be able to link to a robot operating system. An open development platform for connected vehicle communications will be added later. The op