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Hybrid Electric Vehicle Model Predictive Control Torque-Split Strategy Incorporating Engine Transient Characteristics

机译:结合发动机瞬态特性的混合动力电动汽车模型预测控制扭矩分裂策略

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摘要

This paper presents a model predictive control (MPC) torque-split strategy that incorporates diesel engine transient characteristics for parallel hybrid electric vehicle (HEV) powertrains. To improve HEV fuel efficiency, torque split between the diesel engine and the electric motor and the decision as to whether the engine should be on or off are important. For HEV applications where the engines experience frequent transient operations, including start–stop, the effect of the engine transient characteristics on the overall HEV powertrain fuel economy becomes more pronounced. In this paper, by incorporating an experimentally validated real-time-capable transient diesel-engine model into the MPC torque-split method, the engine transient characteristics can be well reflected on the HEV powertrain supervisory control decisions. Simulation studies based on an HEV model with actual system parameters and an experimentally validated diesel-engine model indicate that the proposed MPC supervisory strategy considering diesel engine transient characteristics possesses superior equivalent fuel efficiency while maintaining HEV driving performance.
机译:本文提出了一种模型预测控制(MPC)扭矩分割策略,该策略结合了并联混合动力电动汽车(HEV)动力总成的柴油机瞬态特性。为了提高混合动力汽车的燃油效率,柴油发动机和电动机之间的扭矩分配以及决定发动机是否应开启或关闭的决定很重要。对于发动机经历频繁的瞬态运行(包括起停)的HEV应用而言,发动机瞬态特性对整个HEV动力总成燃油经济性的影响变得更加明显。在本文中,通过将经过实验验证的具有实时能力的瞬态柴油发动机模型纳入MPC扭矩分割方法,可以在HEV动力总成监督控制决策中很好地反映发动机的瞬态特性。基于具有实际系统参数的HEV模型和经过实验验证的柴油机模型的仿真研究表明,考虑到柴油机瞬态特性的MPC监督策略在保持HEV行驶性能的同时具有出色的等效燃油效率。

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