Skip to main content

Federal Highway Administration showcases truck platooning technology

The US Federal Highway Administration (FHWA) has conducted the first of a two-day demonstration of three-truck platoons on I-66 in Virginia. The results of a four-year research project to test the effectiveness of state-of-the-art driving and communications technologies were showcased at the event. Truck platooning uses vehicle-to-vehicle communications technology to allow trucks to follow each other more closely – at about one second apart – and travel in a more coordinated fashion.
September 15, 2017 Read time: 2 mins
The US Federal Highway Administration (FHWA) has conducted the first of a two-day demonstration of three-truck platoons on I-66 in Virginia. The results of a four-year research project to test the effectiveness of state-of-the-art driving and communications technologies were showcased at the event.


Truck platooning uses vehicle-to-vehicle communications technology to allow trucks to follow each other more closely – at about one second apart – and travel in a more coordinated fashion.

While various aspects of truck platooning have been studied for years, FHWA’s Exploratory Advance Research program has taken testing to new levels with the addition of cooperative adaptive cruise control (CACC) technology, which adds vehicle-to-vehicle communications to the adaptive cruise control capability now available in new vehicles. This connectivity allows trucks to operate more smoothly as a unit, reducing and controlling the gaps between vehicles.

The demonstration involved partially automated trucks – which are not driverless, and used professional drivers. The advanced technology that makes platooning possible is meant to supplement, not replace, the nation’s commercial motor vehicle operators.

Related Content

  • Inrix expands traffic data programme collaboration
    October 12, 2012
    Nearly a year after the I-95 Corridor Coalition, the University of Maryland (UMD) and Inrix announced a three-year expansion of the Vehicle Probe Project (VPP), the coalition and its partners are expanding their collaboration once again. Through a Federal Highway Administration (FHWA) Awards Grant, the coalition will use Inrix traffic information to expand coverage to over 40,000 miles of roads across fourteen states.
  • Road user charging - replacing the gas tax with a mileage based fee
    January 19, 2012
    Oregon Department of Transportation's James Whitty discusses his state's progress with VMT fee-based charging. Back in 2001, the state of Oregon stole a lead on the rest of the US when it decided to address the need to do something about the gas tax and its decreasing ability to fund highway construction and upkeep. Recognising that a dwindling pot of money could only shrink further as vehicles became more fuelefficient, Oregon's Legislative Assembly passed laws which led to the setting up, by the state's g
  • FHWA proposes new performance measures to reduce highway congestion
    April 19, 2016
    The US Department of Transportation’s Federal Highway Administration (FHWA) today released a proposed regulation outlining new performance measures to assess travel reliability, congestion, and emissions at a national level. It calls for an increased level of transparency and accountability in establishing and achieving targets for performance impacting commuters and truck drivers. The measures address the concerns outlined in the USDOT report Beyond Traffic, which examines the trends and choices facing
  • Reducing incident clear up times, saving money
    January 24, 2012
    In 2007 in Atlanta, Georgia, it took over four hours to open the road after a major commercial vehicle incident. Not any more. Four years ago the Texas Transportation Institute (TTI) cited Atlanta, Georgia as the third-most congested city in the United States. Each traveller in metro Atlanta lost an incredible 57 hours a year to traffic delays, wasting 40 gallons of fuel while sitting in traffic. In 2007, it took nearly four and a half hours to open travel lanes after an average tractor-trailer incident. Th