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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Research on Gear Shifting Process without Disengaging Clutch for a Parallel Hybrid Electric Vehicle Equipped with AMT
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Research on Gear Shifting Process without Disengaging Clutch for a Parallel Hybrid Electric Vehicle Equipped with AMT

机译:配备AMT的混合动力电动汽车不分离离合器的换挡过程研究。

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Dynamic models of a single-shaft parallel hybrid electric vehicle (HEV) equipped with automated mechanical transmission (AMT) were described in different working stages during a gear shifting process without disengaging clutch. Parameters affecting the gear shifting time, components life, and gear shifting jerk in different transient states during a gear shifting process were deeply analyzed. The mathematical models considering the detailed synchronizer working process which can explain the gear shifting failure, long time gear shifting, and frequent synchronizer failure phenomenon in HEV were derived. Dynamic coordinated control strategy of the engine, motor, and actuators in different transient states considering the detailed working stages of synchronizer in a gear shifting process of a HEV is for the first time innovatively proposed according to the state of art references. Bench test and real road test results show that the proposed control strategy can improve the gear shifting quality in all its evaluation indexes significantly.
机译:装备有自动机械变速器(AMT)的单轴并联混合动力电动汽车(HEV)的动力学模型在换档过程中的不同工作阶段中进行了描述,而没有分离离合器。深入分析了在换挡过程中影响瞬态的换挡时间,零件寿命和换挡冲击的参数。推导了考虑详细同步器工作过程的数学模型,可以解释混合动力汽车换档失败,长时间换档和频繁的同步器故障现象。根据现有技术参考文献,首次创新地提出了在不同瞬态下的发动机,电动机和致动器的动态协调控制策略,其中考虑了HEV换档过程中同步器的详细工作阶段。基准测试和实际道路测试结果表明,所提出的控制策略可以在所有评估指标上显着提高换档质量。

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