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Design of an energy management strategy for parallel hybrid electric vehicles using a logic threshold and instantaneous optimization method

机译:基于逻辑阈值和瞬时优化方法的并联混合动力汽车能源管理策略设计

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摘要

A novel parallel hybrid electric vehicle (PHEV) configuration consisting of an extra one-way clutch and an automatic mechanical transmission (AMT) is taken as the study subject of this paper. An energy management strategy (EMS) combining a logic threshold approach and an instantaneous optimization algorithm is developed for the investigated PHEV. The objective of this EMS is to achieve acceptable vehicle performance and drivability requirements while simultaneously maximizing engine fuel economy and maintaining the battery state of charge (SOC) in its rational operation range at all times. Under the MATLAB/Simulink environment, a computer simulation model of the studied PHEV is established using the bench test results. Simulation results for the behavior of the engine, motor, and battery illustrate the potential of the proposed control strategy in terms of fuel economy and in keeping the deviations of SOC at a low level.
机译:本文研究的新型并联混合动力电动汽车(PHEV)包括一个额外的单向离合器和一个自动机械变速器(AMT)。针对所研究的PHEV,开发了一种将逻辑阈值方法和瞬时优化算法相结合的能源管理策略(EMS)。该EMS的目标是达到可接受的车辆性能和驾驶性能要求,同时最大程度地提高发动机燃油经济性,并始终将电池充电状态(SOC)保持在其合理的运行范围内。在MATLAB / Simulink环境下,使用基准测试结果建立了所研究PHEV的计算机仿真模型。发动机,电动机和电池的性能仿真结果说明了所提出的控制策略在燃油经济性和将SOC偏差保持在较低水平方面的潜力。

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