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Optimal energy management and shift scheduling control of a parallel plug-in hybrid electric vehicle

机译:平行插件混合动力电动车的最优能量管理和移位调度控制

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This paper deals with design of a control strategy for a parallel powertrain configuration of a plug-in hybrid electric vehicle (PHEV). The control strategy is aimed at minimising fuel consumption and number of gear shift events for a wide range of driving cycles, while keeping the battery state-of-charge within allowable range. A control-oriented backward-looking model of PHEV powertrain is used as a design basis. The control strategy combines a rule-based controller with an equivalent consumption minimisation strategy (ECMS). The ECMS uses both transmission gear ratio and engine torque as control variables, thus eliminating a need for designing a separate gear shift scheduling strategy and exploiting a full potential of powertrain efficiency improvement. The overall control strategy is designed for different characteristic operating regimes including charge depleting, charge sustaining, and blended regimes. The strategy is verified by computer simulations against globally optimal benchmark obtained by using the dynamic programming-based optimisation, whose results are also used for fine tuning of controller parameters.
机译:本文涉及一种控制策略的控制策略,用于并联动能机配置的插件混合动力电动车(PHEV)。控制策略旨在最小化燃料消耗和换档事件的数量,用于广泛的驾驶循环,同时保持电池在允许范围内充电。面向控制的PHEV动力总成的视图模型用作设计基础。控制策略结合了基于规则的控制器具有等效消耗最小化策略(ECM)。 ECMS使用传动齿轮比和发动机扭矩作为控制变量,从而消除了设计单独的齿轮移位调度策略并利用动力总成效率改进的全部潜力。整体控制策略专为不同的特征操作制度而设计,包括电荷消耗,费用维持和混合制度。通过使用使用基于动态编程的优化获得的全局最佳基准测试的计算机模拟来验证该策略,其结果也用于控制器参数的微调。

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