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A real time energy management strategy for plug-in hybrid electric vehicles based on optimal control theory

机译:基于最优控制理论的插水混合动力车电动汽车实时能源管理策略

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Plug-in hybrid electric vehicles are commonly designed to work in Charge Depleting/Charge Sustaining (CD/CS) mode, depleting the battery by driving in only-electrical mode until the SoC reaches its minimum acceptable threshold, and then sustaining the state of charge till the end of the mission, operating as a traditional hybrid vehicle. Nonetheless, a simple application of an optimal control framework suggests a blended discharge strategy, in which the powertrain is operated as to gradually deplete the SoC and reach the lower threshold only at the end of the trip. Such an algorithm has the drawback that the optimal solution can only be reached offline, depending on the a-priori knowledge of the driving event, making it unsuitable to be implemented online, as it is. The paper presents a methodology to design a heuristic controller, to be used online, based on rules extracted from the analysis of the powertrain behavior under the optimal control solution. The application is a parallel plug-in vehicle, derived from a re-engineered engine-only driven powertrain, and the optimal problem is solved with the Pontryagin's Minimum Principle. Results are also compared to the same vehicle in its standard internal combustion engine version, as well as the commonly implemented Charge Depleting/Charge Sustaining strategy.
机译:插入式混合动力电动车辆通常被设计为在充电耗尽/充电维持(CD / CS)模式中,通过仅在电动模式下驱动,直到SOC达到其最小可接受的阈值,然后维持充电状态,从而耗尽电池,然后维持充电状态直到使命结束,作为传统混合动力车辆。尽管如此,最佳控制框架的简单应用表明了混合的放电策略,其中动力总成被操作,从而逐渐消耗SOC并仅在跳闸结束时达到较低的阈值。这样的算法具有缺点,即只能达到最佳解决方案,这取决于驱动事件的a-prioria知识,使其不适合在线实现。本文提出了一种设计启发式控制器的方法,基于在最佳控制解决方案下的动力系行为分析中提取的规则来在线使用。该应用是一种并行插入式车辆,源自重新设计的发动机驱动的动力系,并且通过Pontryagin的最低原理解决了最佳问题。结果也将其在其标准内燃机版本中的相同车辆进行比较,以及常用的电荷消耗/充电策略。

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