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Mechanism of Low Frequency Idling Vibration in Rear-Wheel Drive Hybrid Vehicle Equipped with THS II

机译:配备THS II的后轮驱动混合动力汽车的低频空转振动机理

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摘要

Although idling vibration is usually caused by 1st order of engine combustion force, other engine forces also occur at frequencies lower than the 1st order of combustion (called low frequency idling vibration in this paper). The drive-line of the Toyota Hybrid System II (THS II) has different torsional vibration characteristics compared to a conventional gasoline engine vehicle with an automatic transmission. Nonlinear characteristics caused by the state of backlash of pinions and splines influence changes in the torsional resonance frequency. The torsional resonance frequency of the drive-line can be controlled utilizing the hybrid system controls of the THS II.
机译:尽管空转振动通常是由发动机的一阶燃烧力引起的,但其他发动机力也会以低于燃烧一阶的频率发生(在本文中称为低频空转振动)。与具有自动变速器的常规汽油发动机车辆相比,丰田混合动力系统II(THS II)的传动系统具有不同的扭转振动特性。小齿轮和花键的反冲状态引起的非线性特性会影响扭转共振频率的变化。传动系统的扭转共振频率可以利用THS II的混合动力系统控制来控制。

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