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Active control of hybrid electric vehicle launch vibration in pure electric mode

机译:纯电动模式中混合动力电动汽车发射振动的主动控制

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Sudden torque changes and torque fluctuations caused by a traction motor in HEV (hybrid electric vehicle) can result in a driveline oscillation. This paper focuses on the HEV launch vibration in pure electric mode while only the electric motor is generating output torque. A relevant mathematical model has been built based on the working principle. According to the model, the torsional vibration characteristics of the electric propulsion system have been analyzed. Two active control methods, feed-forward control (FFC) and pole placement (PP) have been applied to suppress the HEV launch vibration. However, such longitudinal vibration may still be perceived by passengers, though they can attenuate the vibration to some extent. Therefore another method, wave superposition control strategy (WSCS), has been proposed to suppress the vibration more effectively. In order to prove the control effectiveness of WSCS, all these three active control methods have been applied in simulation for a comprehensive comparison of the vibration suppression effect. Simulation results demonstrate that compared with FFC and PP, WSCS minimizes the overshoot of wheel angular acceleration (WAA) most and doesn't have much effect on the system response quickness, which can be regarded as the most effective control method.
机译:由HEV(混合动力电动车辆)中的牵引电动机引起的突然扭矩变化和扭矩波动可能导致传动轴振荡。本文侧重于纯电动模式下的HEV发射振动,同时仅电动机产生输出扭矩。基于工作原理建立了相关的数学模型。根据该模型,已经分析了电推进系统的扭转振动特性。已经应用了两个主动控制方法,前馈控制(FFC)和杆放置(PP)来抑制HEV发射振动。然而,这种纵向振动可能仍然被乘客感知,尽管它们可以在一定程度上衰减振动。因此,已经提出了另一种方法,波浪叠加控制策略(WSCs),以更有效地抑制振动。为了证明WSCs的控制效果,所有这三种主动控制方法已应用于模拟以进行振动抑制效果的全面比较。仿真结果表明,与FFC和PP相比,WSCS最小化车轮角度加速度(WAA)的过冲,对系统响应速度没有太大影响,这可以被视为最有效的控制方法。

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