Energy Consumption Analysis of Different Bev Powertrain Topologies by Design Optimization

被引:0
|
作者
Bin Wang
David Ling-Shun Hung
Jie Zhong
Kwee-Yan Teh
机构
[1] Shanghai Jiao Tong University,State Key Laboratory of Ocean Engineering
[2] Shanghai Jiao Tong University,National Engineering Laboratory for Automotive Electronic Control Technology
[3] Shanghai Jiao Tong University,University of Michigan
关键词
Battery electric vehicles; Energy consumption; Optimal design; Powertrain topology; Drive cycle analysis;
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中图分类号
学科分类号
摘要
Flexible layout of electric motors in battery electric vehicles (BEVs) has enabled different powertrain topologies to be used. However, these different powertrain topologies also affect the overall efficiency of energy conversion from the electrochemical form stored in the battery to the mechanical form on the driving wheels for vehicle propulsion. In this study, a methodology combining an energy-based BEV simulation model with the genetic algorithm optimization approach is applied to evaluate the energy efficiency of three different BEV powertrain topologies. The analysis is carried out assuming two different urban driving conditions, as exemplified by the New European Drive Cycle (NEDC) and the Japanese JC08 drive cycle. Each of the three BEV powertrain topologies is then optimized – in terms of its electric motor size and, where applicable, gear reduction ratio – for minimum energy consumption. The results show that among the three powertrain topologies, the wheel-hub drive without gear reducers consumes the least energy. The energy consumption of BEVs under the more aggressive JC08 drive cycle is consistently 8 % above that under NEDC for all three powertrain topologies considered.
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页码:907 / 914
页数:7
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