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Vehicle driveability improvement by prediction and compensation of the shaft torque: a state-space approach

机译:通过预测和补偿轴扭矩来提高车辆的驾驶性能:一种状态空间方法

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This paper deals with the problem of active damping of driveline oscillations having the objective to improve driveability and passenger comfort. Precisely longitudinal vibrations occur during transient changes in driver demand (tip-in and tip-out maneuvers), on clutch engagement or on backlashes traverse, and negatively affect the driveability. The paper proposes a robust and efficient control of the engine that actively damps the driveline oscillations. A complete methodology based on the prediction and compensation of the shaft torque at critical frequency is presented. The resulting controller is both effective and “readable”. Hence, it can be easily adapted to the vehicle specificity, without re-design, thanks to three tuning parameters.
机译:本文提出了主动阻尼传动系统振动的问题,目的是提高驾驶性能和乘客舒适度。在驾驶员需求的瞬时变化(踩入和踩出操作),离合器啮合或游隙时,会发生精确的纵向振动,并对驾驶性能造成负面影响。本文提出了一种对发动机的鲁棒而有效的控制,该控制可主动抑制传动系统的振动。提出了一种基于关键频率轴转矩的预测和补偿的完整方法。最终的控制器既有效又“可读”。因此,由于具有三个调整参数,因此无需重新设计即可轻松适应车辆特性。

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