Skip to main content

Study reveals benefits of electric Beijing taxi fleet

The impact of introducing plug-in electric vehicles to the streets of Beijing, one of the world’s most polluted cities, has been examined by researchers from the University of Michigan in the ACS journal Environmental Science and Technology. They use big data mining techniques to understand the impact of fleet electrification. As part of the study, the researchers highlight that while plug-in electric vehicles have developed rapidly in recent years there are still uncertainties with regard to market accepta
August 6, 2013 Read time: 2 mins
The impact of introducing plug-in electric vehicles to the streets of Beijing, one of the world’s most polluted cities, has been examined by researchers from the 5594 University of Michigan in the ACS journal Environmental Science and Technology. They use big data mining techniques to understand the impact of fleet electrification.

As part of the study, the researchers highlight that while plug-in electric vehicles have developed rapidly in recent years there are still uncertainties with regard to market acceptance and in particular relating to consumer travel patterns. Previous research has focused on travel pattern data, assuming that everyone follows the same travel pattern as the aggregated average  However, through the development of information and communications technology, researchers are now able to examine individual travel patterns, particularly among public fleets.

They took routes for 10,375 taxis in Beijing, around 15 per cent of the fleet, and retrieved GPS systems for a week. They also introduced the idea of driving segments, the total distance driven between major resting periods when the vehicle is parked with a predetermined threshold.

Findings suggested that the largest petrol displacement, around 1.1million gallons a year, could be achieved by adopting plug-in electric vehicles with a modest range of around 80 miles based on current battery costs and limited public infrastructure.

It states that while battery range is a major concern for consumers, the study suggests larger batteries decrease electrification rate when the battery cost is higher than US$200/kWh. Only when battery cost drops lower than this level can extended range increase adoption.

In addition, it suggests that greenhouse gas emissions of conventional petrol vehicles are 236.7h CO-eq/km, with up to 36.5 kiloton CO2eq per year saved if the fuel cycle emission factor of electricity can be reduced to 168.7 g/km.

For more information on companies in this article

Related Content

  • How MaaS and AVs can cut Oslo traffic
    June 17, 2019
    A new study shows that on-demand AVs and MaaS together could make a significant difference to traffic in Oslo, Norway – but only if ride-share is involved too If you replace today’s traditional private car ownership with a mixture of Mobility as a Service (MaaS) and on-demand autonomous vehicles (AVs) running door-to-door, you could make dramatic cuts in city traffic. That, at least, is the view of researchers from COWI and PTV, who have modelled a variety of future scenarios based on the morning rush h
  • Vehicle ownership - a thing of the past?
    May 22, 2012
    Convergence of electron-powered vehicles with connected vehicle technologies could mean that only a few decades from now the idea of owning a vehicle will be entirely alien to the road user. By Technolution chief scientist Dave Marples with Jason Barnes Even when taken individually, many of the developments going on and around vehiclebased mobility will bring about major changes in transportation. Taken collectively, the transformations we might expect are nothing short of profound. Enumeration of the influ
  • Boost for EV charging in Canada
    July 24, 2017
    Canada's electric vehicle industry is about to receive a major boost with the announcement of an agreement between eCAMION, based in Toronto, Dallas-based Leclanché North America, part of Switzerland's Leclanché and SGEM based in Geneva, to develop and install a network of 34 fast-charging stations along the Trans-Canada Highway (TCH). The project, designed to encourage the adoption of electric vehicles (EVs) in Canada, is being partially funded Natural Resources Canada (NRCan) under the Canadian Energy Inn
  • Road pricing plan for downtown Vancouver
    December 2, 2020
    User-pays blueprint part of Canadian city's effort to cut carbon pollution by 50% by 2030