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Analysis of a rule-based control strategy for on-board energy management of series hybrid vehicles

机译:基于规则的混合动力汽车车载能量管理控制策略分析

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In the paper, the performances of a rule-based (RB) control strategy for series hybrid vehicles are assessed via comparison with a batch Genetic Algorithm-based (GA) optimization. The suitability of GA optimization as reference benchmark for series architecture is demonstrated through comparison with Dynamic Programming technique. Specifically in this paper, a hybrid solar vehicle (HSV) was considered, thus requiring to define the heuristic rules as function of both average traction power and current solar irradiation. The comparison with the reference GA benchmark confirms the suitability of the proposed RB strategy for HSV on-board energy management. Extensive simulations were performed to test the influence of driving cycle features, power-prediction time-horizon and solar irradiation on HSV fuel economy. Such simulation analysis, beyond providing useful indications about correct implementation of the RB strategy on both hybrid and solar hybrid cars, also demonstrates the potentialities offered by HSV powertrains in both urban and highway driving conditions.
机译:在本文中,通过与基于批处理遗传算法(GA)的优化进行比较,评估了系列混合动力汽车的基于规则(RB)控制策略的性能。通过与动态编程技术的比较,证明了GA优化作为系列架构参考基准的适用性。特别是在本文中,考虑了混合动力太阳能汽车(HSV),因此需要定义启发式规则作为平均牵引力和当前太阳辐射的函数。与参考GA基准的比较证实了所建议的RB策略在HSV车载能源管理中的适用性。进行了广泛的仿真,以测试驾驶循环特性,功率预测时间水平和太阳辐射对HSV燃油经济性的影响。这种仿真分析除了提供有关在混合动力和太阳能混合动力汽车上正确实施RB策略的有用指示之外,还证明了HSV动力总成在城市和高速公路行驶条件下的潜力。

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