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Adaptive slip engagement control of a dry clutch using a clutch torque estimator

机译:使用离合器扭矩估算器的干式离合器的自适应滑移接合控制

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A dry clutch is an important part in a vehicle powertrain system and the dry clutch is primarily utilized for small and medium sized vehicles. The slip engagement is a method of engaging a clutch in a state where the speeds of both sides of the clutch are different. When a clutch is slipping, energy loss due to clutch friction, and clutch wear occurs. Therefore, it is necessary to control a clutch precisely in slip engagement of a clutch. A clutch friction model is needed to implement feedforward control in clutch slip engagement control, but there are some uncertain parameters in a clutch friction model. In this study, a clutch friction coefficient and a clutch touch point are represented as uncertain parameters of a clutch friction model. Thus, a simultaneous adaptation method of a clutch friction coefficient and a clutch touch point in a clutch friction model, and a feedforward control method of slip engagement of a dry clutch using the adaptation method are proposed in this study. The proposed adaptive control algorithm was verified with the slip engagement simulation of a dry engine clutch in a parallel hybrid vehicle in the MATLAB/Simulink environment.
机译:干式离合器是车辆动力总成系统中的重要部分,干式离合器主要用于中小型车辆。滑动接合是在离合器的两侧的速度不同的状态下接合离合器的方法。当离合器打滑时,由于离合器摩擦而导致能量损失,并且发生离合器磨损。因此,有必要在离合器的滑动接合中精确地控制离合器。需要离合器摩擦模型来实现离合器滑移接合控制中的前馈控制,但是离合器摩擦模型中存在一些不确定的参数。在这项研究中,离合器摩擦系数和离合器接触点被表示为离合器摩擦模型的不确定参数。因此,本文提出了离合器摩擦模型中离合器摩擦系数和离合器接触点的同时自适应方法,以及采用该自适应方法的干式离合器滑动接合的前馈控制方法。在MATLAB / Simulink环境下,通过并联混合动力汽车中的干式发动机离合器的滑移接合仿真,对提出的自适应控制算法进行了验证。

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