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Energy management for parallel HEV based on PMP algorithm

机译:基于PMP算法的平行HEV能量管理

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The energy crisis and increasingly serious environmental pollution are pressing people to save energy and reduce emissions. Hybrid electric vehicles (HEVs) have demonstrated the capability to improve fuel economy and emissions. Energy management system (EMS) of Hybrid Electric Vehicles can take advantage of maximum electric energy in order to reduce fuel consumption and emission. However, because of the characteristic of nonlinear and hybrid property, it is hard to establish the mathematic model of the EMS of HEVs. Moreover, for the driving cycles are random and the driver's driving habit is different from each other, the difficulty to allocate the request power in real time is greatly increased. An optimization approach based on Pontryagin's Minimum Principle (PMP) is proposed. Through the proposed method, the request power can be allocated between energy resources in real time on the basis of the optimal operation profile of the generator at the special driving cycles, in order that the real-time performance of HEVs can be satisfied and the global optimization of EMS can be guaranteed as well. The ADVISOR simulation results show the proposed energy optimal management method based on Pontryagin's Minimum Principle is valid.
机译:能源危机和日益严重的环境污染正在迫使人们节省能源和减少排放。混合动力电动汽车(HEV)已经证明了改善燃油经济性和排放的能力。混合动力电动车的能量管理系统(EMS)可以利用最大电能,以降低燃料消耗和排放。然而,由于非线性和杂交性的特征,很难建立HEV的EMS的数学模型。此外,对于驾驶循环是随机的并且驾驶员的驾驶习惯彼此不同,难以在实时分配请求功率。提出了一种基于Pontryagin最低原理(PMP)的优化方法。通过所提出的方法,可以基于特殊驾驶周期的发电机的最佳操作简档实时在能量资源之间分配请求功率,以便可以满足HEV的实时性能和全局可以保证EMS的优化。顾问仿真结果显示了基于Pontryagin最低原则的所提出的能量最优管理方法有效。

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