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

  • Getting C/AVs from pipedream to reality
    October 17, 2019
    The UK government has suggested that driverless cars could be on the roads by 2021. But designers and engineers are grappling with a number of difficult issues, muses Chris Hayhurst of MathWorks Earlier this year, the UK government made the bold statement that by 2021, driverless cars will be on the UK’s roads. But is this an achievable reality? Driverless technology already has its use cases on our roads, with levels of autonomy ranked on a scale. At one end of the spectrum, level 1 is defined by th
  • ITS Australia welcomes heavy vehicle smart technology trials
    May 10, 2013
    New funding of US$1.7 million recently announced by the Federal and New South Wales Governments for trials of Cooperative Intelligent Transport Systems (C-ITS) technologies has been welcomed by Intelligent Transport Systems Australia. The Heavy Vehicle Safety and Productivity Program funds provide for pioneering projects involving heavy vehicle to infrastructure communication technologies to make roads safer.
  • Free-flow tolling needs classification technology rethink
    February 2, 2012
    The move to all-electronic fee collection should be encouraging tolling authorities to look again at whether their vehicle classification criteria and technologies remain at all appropriate. Bob Lees of Idris Technology writes
  • Connected Vehicle Technology Demonstration
    May 1, 2012
    Connected Vehicle Cooperative Safety Systems use 5.9 GHz Dedicated Short Range Communications (DSRC) to enable vehicle active safety systems which may help drivers avoid crashes. The United States Department of Transportation (US DOT) has partnered with the Crash Avoidance Metrics Partnership (CAMP) Vehicle Safety Communications 3 (VSC3) Consortium to research, develop and test the technologies that form the framework for these systems.