4.5 Article

City Bus Powertrain Comparison: Driving Cycle Variation and Passenger Load Sensitivity Analysis

期刊

ENERGIES
卷 11, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/en11071755

关键词

city bus; powertrain; driving cycle; passenger load; energy consumption

资金

  1. Finnish Funding Agency for Technology and Innovation, Tekes, through the Batteries for Business project
  2. Yrjo and Senja Koivunen foundation
  3. Henry Ford foundation

向作者/读者索取更多资源

Alternative powertrains are rapidly increasing in popularity in city buses. Hence, it is vitally important to understand the factors affecting the performance of the powertrains in order to operate them on appropriate routes and as efficiently as possible. To that end, this paper presents an exhaustive driving cycle and passenger load sensitivity analysis for the most common city bus powertrain topologies. Three-thousand synthetic cycles were generated for a typical suburban bus route based on measured cycles and passenger numbers from the route. The cycles were simulated with six bus models: compressed natural gas, diesel, parallel hybrid, series hybrid, hydrogen fuel cell hybrid, and battery electric bus. Twenty reference cycles featuring various types of routes were simulated for comparison. Correlations between energy consumption and the various driving cycle parameters and passenger loads were examined. Further analysis was conducted with variance decomposition. Aggressiveness and stop frequency had the highest correlation with the consumption. The diesel bus was the most sensitive to aggressiveness. The parallel hybrid had a lower statistical dispersion of consumption than the series hybrid on the suburban route. On the varied routes, the opposite was true. The performance of the parallel hybrid powertrain deteriorated significantly on cycles with high aggressiveness and stop frequency. In general, the high correlation between aggressiveness and energy consumption implies that particular attention must be paid to limiting high-speed accelerations of city buses.

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