Skip to main content

Utah university demonstrates wireless electric bus

Utah State University (USU) in the US has developed what it claims is the first and only wirelessly charged electric bus designed and developed exclusively by a North American research organisation. Nicknamed the Aggie Bus, the new vehicle is also the first of its kind in the world to achieve key performance standards for a wirelessly charged vehicle.
November 19, 2012 Read time: 2 mins
Utah State University (USU) in the US has developed what it claims is the first and only wirelessly charged electric bus designed and developed exclusively by a North American research organisation.  Nicknamed the Aggie Bus, the new vehicle is also the first of its kind in the world to achieve key performance standards for a wirelessly charged vehicle.

The breakthrough prompted Robert T Bhunin, the Utah State University vice president of commercialisation and regional development, to state that the Aggie Bus is “a historic achievement and a great leap forward in the science and engineering related to electric vehicles.”

The new electric bus demonstrates that wireless charging is a viable option, at least for vehicles that make scheduled stops at pre-determined locations, such as bus stops.
The bus simply stops over a pad in the ground to recharge its batteries. Without wireless capabilities, the driver would have to get out of the bus to plug in manually.  USU also notes that, in terms of maintenance, the wireless system involves significant savings over plug-in systems, since it involves no moving parts and virtually no wear and tear. The system is also weatherproof and has no unsightly wires.

With a reliable network of frequent recharges, the bus can run all day without having to charge a full of load on-board batteries. USU says that makes it the equal of any standard diesel or compressed natural gas bus.

USU claims the electric is a robust prototype for a commercially viable vehicle.  Indeed, the 5583 Utah Transit Authority has committed to a partnership for launching a full scale demonstration of the new technology by the middle of 2013, consisting of a 40-foot transit bus on a public transit route through the campus of another state institution, the University of Utah in Salt Lake City.

For more information on companies in this article

Related Content

  • Infrastructure funding and road user charging – debate continues
    February 1, 2012
    Jack Opiola provides an overview of the ongoing debate over US infrastructure funding and the progress – or lack of it – towards vehicles miles travelled road user charging. The future funding of transportation and mobility infrastructure is attracting increased attention. There has been sharp debate in the US, where landmark reports from the National Surface Transportation Infrastructure Financing Commission and the National Surface Transportation Policy and Revenue Study Commission both stated that the cu
  • Fare-free BC – Earth Day special in Canada
    April 22, 2024
    Bus passengers in the province of British Colombia are exempt from paying fares today to mark global Earth Day, according to BC Transit.
  • Developing an integrated WIM/ANPR enforcement system
    July 31, 2012
    The weigh in motion market remains especially buoyant and technological development continues to reflect this. Although there are major differences in operating philosophies, particularly between developed and developing countries, both the numbers of countries using Weigh In Motion (WIM) technology and the numbers of systems that they deploy are on the increase.
  • Cooperative road infrastructures - progress and the future
    February 1, 2012
    Robert Bertini, deputy administrator of the USDOT's Research and Innovative Technology Administration, discusses the research and deployment paths of cooperative road infrastructures. High-level analysis by the US's National Highway Traffic Safety Administration (NHTSA) of the potential of Vehicle-to-Infrastructure/Infrastructure-to-Vehicle (V2I/I2V) and Vehicle-to-Vehicle (V2V) technologies indicates that V2V could in exclusivity address a large proportion of crashes involving unimpaired drivers. In fact,