Skip to main content

Volkswagen to Test E-Golf BEV in the US

Volkswagen of America is this month starting a pilot scheme to test 20 prototype E-Golf battery electric vehicles (BEVs) over a nine-month period in the US in Detroit Metro, San Francisco, and Washington D.C. markets. Twelve of the E-Golf BEVs, will be allocated to selected Volkswagen employees during the time period. By studying E-Golf use across multiple geographical regions, Volkswagen will monitor the effect of climate conditions, driving patterns, and energy performance; the data and insights gained du
April 13, 2012 Read time: 2 mins
994 Volkswagen of America is this month starting a pilot scheme to test 20 prototype E-Golf battery electric vehicles (BEVs) over a nine-month period in the US in Detroit Metro, San Francisco, and Washington D.C. markets.

Twelve of the E-Golf BEVs, will be allocated to selected Volkswagen employees during the time period. By studying E-Golf use across multiple geographical regions, Volkswagen will monitor the effect of climate conditions, driving patterns, and energy performance; the data and insights gained during the scheme will be used in the final development of future EV technology applications. In addition to testing the vehicle itself, users will also test specific services designed for the E-Golf. For example, 220-volt charging stations will be installed at the employees’ homes to charge the vehicles.

“During this test we will examine in detail all the technical and administrative aspects of typical consumers using electric vehicles on an everyday basis,” said Dr Rudolf Krebs, executive vice president and head of Volkswagen Group E-Traction. “For a successful market launch of electric vehicles, the way that home chargers are handled is very important, along with easy access to public charging infrastructure. For the US, we also have to recognise the specific legal regulations as well as the different characteristics of the electricity supply: both the reduced 110-volt mains supply and the type of charging plugs.”

Related Content

  • April 17, 2012
    IBM, Honda, and PG&E enable smarter charging for EVs
    IBM has teamed with American Honda Motor Company and Pacific Gas and Electric Company on a new pilot project that will allow communication between electric vehicles (EVs) and the power grid. This project will demonstrate and test an electric vehicle's ability to receive and respond to charge instructions based on the grid condition and the vehicle's battery state. With visibility into charging patterns, energy providers will have the ability to more effectively manage charging during peak hours and create c
  • April 12, 2013
    New EV chargers from ABB
    Switzerland based ABB has launched the Terra SmartConnect (SC) fast chargers for electric vehicles (EV) in North America. Terra SC will be available with support for the CHAdeMO fast-charging standard, with SAE/combined charging system and will be made available in the Americas in second quarter of 2013. According to the company, the Terra SC can fully charge an electric car in thirty to 120 minutes and charge the battery of currently available EVs from 30 per cent to 80 per cent in about half an hour. The
  • April 1, 2016
    Asia Pacific expected to lead EV charging station market by 2022
    According to Markets and Markets’ latest market research report, the electric vehicle (EV) charging station market is estimated to reach US$12.61 Billion by 2022, at a CAGR of 29.8 per cent between 2016 and 2022. Factors which are driving the electric vehicle charging stations market include government subsidies and incentives, increasing use of EVs, and the growing need to reduce carbon emissions. The US Environmental Protection Agency (EPA) categorises battery electric vehicles (BEVs) as zero-emissi
  • June 25, 2018
    US Cities push for smarter poles
    US Cities The need to connect existing infrastructure has led various US transit authorities into imaginative alleyways: David Crawford examines some new roles for street furniture. US cities are vying with each other in developing schemes to create a new generation of connected places. Their strategies include taking advantage of their streetlight poles’ height and ubiquity to give them new roles in supporting intelligent nodes. They are now being equipped for collecting real-time data on key transport