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IMPACT OF ENGINE DYNAMICS ON TORQUE SPLIT MANAGEMENT OF A HYBRID ELECTRIC VEHICLE

机译:发动机动力学对混合动力汽车扭矩分割管理的影响

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Energy management strategies in a parallel Hybrid Electric Vehicle (HEV) greatly depend on the accuracy of internal combustion engine (ICE) data. It is a common practice to rely on static maps for required engine torque-fuel efficiency data. The engine dynamics are ignored in these static maps and it is uncertain how neglecting these dynamics can affect fuel economy of a parallel HEV. This paper presents the impact of ICE dynamics on the performance of the torque split management strategy. A parallel HEV torque split strategy is developed using a method of model predictive control. The control strategy is implemented on a HEV model with an experimentally validated, dynamic ICE model. Simulation results show that the ICE dynamics can degrade performance of the HEV control strategy during the transient periods of the vehicle operation by more than 20 % for city driving conditions in a common North American drive cycle. This also leads to substantial fuel penalty which is often overlooked in conventional HEV energy management strategies.
机译:并行混合动力电动汽车(HEV)中的能源管理策略在很大程度上取决于内燃机(ICE)数据的准确性。通常的做法是依靠静态映射获取所需的发动机扭矩-燃料效率数据。在这些静态映射中忽略了发动机动力学,并且不确定是否忽略这些动力学会如何影响并联HEV的燃油经济性。本文介绍了ICE动力学对扭矩分配管理策略性能的影响。使用模型预测控制方法开发了并行的HEV扭矩分配策略。控制策略是在带有经过实验验证的动态ICE模型的HEV模型上实施的。仿真结果表明,在北美常见的驾驶循环中,对于城市驾驶条件,在车辆运行的瞬态期间,ICE动力学性能会使HEV控制策略的性能降低20%以上。这也导致大量的燃料损失,这在传统的混合动力汽车能源管理策略中常常被忽略。

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