Skip to main content

Four expansions added to Virginia’s Smart Road to test AVs in urban, rural and residential environments

The Virginia Tech Transportation Institute and the Virginia Department of Transportation (VDoT) has unveiled four expansions to the Virginia Smart Road to accelerate advanced-vehicle testing and explore how automated and autonomous vehicles (AVs) will function on U.S. roadways including edge-and-corner environments. Two new facilities have opened for testing: The Surface Street Expansion, an urban test bed, and the Live Roadway Connector, which connects the Smart road to the U.S. Route 460-Business,
November 27, 2017 Read time: 3 mins
The Virginia Tech Transportation Institute and the Virginia Department of Transportation (VDoT) has unveiled four expansions to the Virginia Smart Road to accelerate advanced-vehicle testing and explore how automated and autonomous vehicles (AVs) will function on U.S. roadways including edge-and-corner environments.

Two new facilities have opened for testing: The Surface Street Expansion, an urban test bed, and the Live Roadway Connector, which connects the Smart road to the U.S. Route 460-Business, public road.

The recently completed surface street area has been aims to accommodate urban and residential scenarios in a safe and controlled facility as well as enabling researchers to study pedestrian risk. It has portable features, which include reconfigurable buildings; roadside elements, such as sidewalks, a bus stop, fire hydrants, light poles, bike lanes, and alleyways; roundabout and stop-controlled intersections; and removable lane markings. These props can be moved and reinstalled, to recreate a variety of real-world settings such as neighbourhoods and city intersections.

Additionally, the Live Roadway Connector is designed with the intention of allowing drivers to seamlessly transition between a live traffic environment and the closed Smart Road facility. This feature will enable researchers to analyse how drivers may behave or adjust their behaviour after driving under automated mode for long periods of time. The connector also increases the length of the highway section of the Smart Road to 2.5 miles.

Scheduled to open in 2018, the Rural Roadway Expansion will test advanced vehicles on a track that will feature hilly and winding roads, short sight distances, small bridges and narrow sections, off-road sections, embankments, soft grass shoulders, natural foliage overhanging the road, and intersections. It will allow researchers to meet the industry demand for testing automated and AVs in urban, residential and rural areas.

Slated to open next year, the Automation Hub will house a new internship program focused on accelerating hands-on practical skill development for Virginia Tech students. Interns will have the opportunity to collaborate with researchers from the VDoT, the University, and the transportation institute as well as automotive industry partners on transportation research and development projects.

Theresa Mayer, vice president of research and innovation at Virginia Tech, said: “This is a critical time in transportation research, a time in which we are realizing the future of transportation at a more accelerated pace than ever before. Advanced vehicles are no longer a pipedream, the spark of an idea in an engineer’s imagination. These vehicles are here; they are being deployed on our nation’s roads."

“Our new testing facilities will undoubtedly enhance industry, governmental, and researcher needs for testing advanced-vehicle technology. It is imperative that our faculty and students work closely with such entities to help design, test, and deploy advanced systems for the betterment of the entire transportation community", Mayer added.

Related Content

  • North Florida signals coordinated approach to congestion management
    October 7, 2013
    David Crawford investigates innovative congestion management in Florida. The largest US city by area is well into the implementation of an ambitious congestion management system (CMS) on the scale of those of higher-profile centres such as Seattle and San Francisco. Regional agency the North Florida Transportation Planning Organisation (NFTPO) aims to ensure that commuters on major highways in Jacksonville can rely on a minimum 72km/h (45mph) driving speed in normal conditions.
  • Technology targets Red-X transgressors
    February 25, 2016
    Currently deployed technology is being used to detect motorists ignoring the ‘red-X’ signs that indicate the lane is closed, as Colin Sowman hears. With an increasing network of ‘Smart Motorways’ - all-lane running or the opening of hard shoulders during times of congestion - Highways England (HE) has identified a growing problem with ‘red-X’ compliance. The ‘red-X’ sign signifies a closed lane or lanes and used to provide a safer area for stranded motorists, emergency workers or road maintenance crews and
  • US updates ITS strategy for Connected Vehicle deployment
    March 16, 2015
    Jon Masters looks at the USDOT’s new ITS Strategic Plan for the next five years. Emphasis and direction for the next five years of Government led ITS research in the United States has been framed within a new ITS Strategic Plan. The US Department for Transportation’s (USDOT) ITS Joint Program Office (JPO) published the report at the tail end of 2014 after concluding a two-year ITS industry consultation process. The Plan identifies a vision to transform the way society moves and the ITS JPO’s aim of advancin
  • ITS World Congress highlights Smart Cities
    August 1, 2017
    The ITS World Congress 2017, taking place in Montreal, Canada from 29 October to 2 November, brings together global leaders in intelligent and transformative transportation to showcase and evaluate the latest innovative concepts, active prototypes, and live systems. A highlight of the event will be the Smart Cities pavilion, which will highlight smart cities from around the world. To date, five cities are participating: Montreal, Quebec (Canada), Columbus, Ohio (USA); Christchurch (New Zealand); Copenhagen