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.

Related Content

  • September 20, 2021
    ITSWC 2021: New solutions for the new normal
    October’s ITS World Congress in Hamburg will profile the changing face of mobility, with real-world examples of electric vehicle implementation, shared transport and autonomy taking centre stage
  • June 8, 2015
    ITS solutions to keep truck traffic moving
    David Crawford reviews freight management initiatives. Managing truck traffic to minimise its environmental impacts, without adversely impacting on its critical economic role, continues to drive ITS-based solutions in both urban and interurban contexts.
  • May 21, 2012
    Benefits of car share quantified
    San Francisco Bay Area had fewer greenhouse gas emissions and less congestion in 2010 due to City CarShare's (CCS) service. According to results third-party studies and 2010 CCS data, City CarShare members saved US$82 million (over the cost of car ownership) and contributed to a greener environment by reducing 60 million pounds of CO2 emissions last year. Additionally, City CarShare, a Bay Area nonprofit, stated it continued to achieve financial sustainability in 2010, ensuring the 10-year old organisation
  • May 8, 2015
    Joined-up thinking for future ITS
    David Crawford looks at a US model which, for modest federal funding, is producing substantive results. Outward and upward is the clear message emerging from the US$458,000, 2015 workplan of the US government’s ENTERPRISE (Evaluating New TEchnologies for Roads PRogram Initiatives in Safety and Efficiency) joint funding scheme for ITS research.