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New method for power allocation of multi-power sources considering speed-up transient vibration of planetary power-split HEVs driveline system

机译:考虑行星动力混合动力混合动力汽车传动系统加速瞬态振动的多电源分配新方法

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One of the major issues for hybrid electric vehicles (HEVs) powertrain is the torsional vibration in the process of speed-up condition, which is unavoidable. The broader goal of this article is to re-examine the classical gear transmission machinery transient vibration problem in the context of a 4 + N degree of freedom nonlinear torsional system that essentially describes a planetary coupling transmission system (PCTS) of HEVs example, and further provide a new method for power allocation of multi-power sources considering speed-up transient vibration of planetary power-split HEVs driveline system. In particular, resonant amplifications during acceleration, as excited by angular displacement-based meshing stiffness of gear teeth, are investigated using a nonlinear torsional model, and the transient vibration predictions are successfully compared with test bench results. Then a quasi-linear model during acceleration process is proposed and numerically solved to obtain the transient vibration acceleration as well as its envelope curve. Dynamic response results of PCTS are also successfully compared and analyzed under different speed-allocation rules. Finally, an improved genetic algorithm method is applied to construct optimal relationship between the motor speeds and vehicle speeds, and the influences of vibration character and energy consumption are successfully considered in multi-optimized function. Experimental results under the speed-up condition show that transient vibration acceleration of the optimized powertrain is decreased within the safe range, thus new power-allocation solutions provide more insight to the enhancement of planetary power-split HEVs quality. (C) 2019 Elsevier Ltd. All rights reserved.
机译:混合动力电动汽车(HEV)动力总成的主要问题之一是加速条件下的扭转振动,这是不可避免的。本文更广泛的目标是在4 + N自由度非线性扭转系统的背景下重新研究经典齿轮传动机械的瞬态振动问题,该系统本质上描述了HEV的行星耦合传动系统(PCTS),并且进一步提供一种考虑行星动力分流式混合动力电动汽车传动系统的加速瞬态振动的多电源功率分配新方法。尤其是,使用非线性扭转模型研究了加速过程中的共振放大,如基于角位移的啮合齿的刚度所激发,并将瞬态振动预测成功地与测试台结果进行了比较。然后提出了加速过程中的准线性模型,并对其进行了数值求解,以获得瞬态振动加速度及其包络曲线。在不同的速度分配规则下,PCTS的动态响应结果也得到了成功的比较和分析。最后,采用改进的遗传算法构造电动机速度与车速之间的最佳关系,并在多优化函数中成功地考虑了振动特性和能量消耗的影响。在加速条件下的实验结果表明,优化的动力总成的瞬态振动加速度在安全范围内减小,因此新的动力分配解决方案为增强行星动力分流式混合动力汽车的质量提供了更多见识。 (C)2019 Elsevier Ltd.保留所有权利。

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