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Energy Efficiency Oriented Design Method of Power Management Strategy for Range-Extended Electric Vehicles

机译:延伸电动汽车电力管理策略的能效导向设计方法

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摘要

The energy efficiency of the range-extended electric bus (REEB) developed by Tsinghua University must be improved; currently, the energy management strategy is a charge-deplete-charge-sustain (CDCS) strategy, which exhibits low energy efficiency on the demonstration model. To improve the energy efficiency and reduce the operating cost, a rule-based control strategy derived from the dynamic programming (DP) strategy is obtained for the Chinese urban bus driving cycle (CUBDC). This rule is extracted by the power-split-ratio (PSR) from the simulation results of the dynamic powertrain model using the DP strategy. By establishing the REEB dynamic models in Matlab/Simulink, the control rule can be achieved, and the power characteristic of powertrain, energy efficiency, operating cost, and computing time are analyzed. The simulation results show that the performance of the rule-based strategy presented in this paper is similar to that of the DP strategy. The energy efficiency can be improved greatly compared with that of the CDCS strategy, and the operating cost can also be reduced.
机译:必须改善由清华大学开发的范围扩展电动总线(REEB)的能效;目前,能源管理战略是一种充电 - 消耗 - 负债 - 维持(CDC)策略,其对示范模型的能量效率低。为了提高能源效率并降低运营成本,为中国城市总线驾驶循环(CUBDC)获得了从动态编程(DP)策略的基于规则的控制策略。使用DP策略,通过动态动力总成模型的仿真结果来提取该规则的功率分流比(PSR)。通过在MATLAB / SIMULINK中建立REEB动态模型,可以实现控制规则,并分析动力总成,能效,运营成本和计算时间的功率特性。仿真结果表明,本文提出的规则的策略的性能类似于DP策略的性能。与CDCS策略的策略相比,能量效率可以大大提高,并且也可以降低运营成本。

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