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Simulation investigation of the performance and cost of pure electric vehicle power train with Ultracapacitor

机译:用超级电动汽车动力列车性能和成本的仿真研究

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As their high specific power and long cycle life over conventional batteries, Ultracapacitors have been thought as a good alternative/supplement for energy storage for city buses which operate considerable fast acceleration, deceleration and stop. In the current study, the powertrain system for a PEV (Pure Electric Vehicle) bus with batteries and ultra-capacitors for energy storage were developed. While high vehicle performance and low systemic cost were considered as main factors for the system configuration, different designs for the combination between batteries and ultra-capacitors were proposed and investigated. Based on optimized control strategies for energy management with and without stop-charging, the system performance was numerically simulated with Matlab/Simulink and ADVISOR under the UK bus driving cycle. The results show the involvement of Ultracapacitors can improve the performance of the vehicle and also reduce the cost. When stop-charging is employed, the battery pack can be completely removed and the Ultracapacitor can provide all the electric energy required by the bus.
机译:作为传统电池的高特定功率和长循环寿命,超级电容器被认为是城市公交车的能量存储的良好替代/补充,其运行相当快的快速加速,减速和停止。在本研究中,开发了具有电池和超电容器的PEV(纯电动车辆)总线的动力总成系统和用于储能。虽然高车辆性能和低系统成本被认为是系统配置的主要因素,提出并研究了电池和超电容器之间的组合的不同设计。基于使用且未停车的能源管理的优化控制策略,在英国公交车驾驶循环下的Matlab / Simulink和Advisor对系统性能进行了数值模拟。结果表明,超超宽容器的累及可以提高车辆的性能,并降低成本。当采用停机时,可以完全移除电池组,超级电容器可以提供总线所需的所有电能。

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