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Study on Dynamic Torque PID Control for Automobile Diaphragm Spring Clutch Based on Kalman Filter

机译:基于卡尔曼滤波器的汽车隔膜弹簧离合器动态转矩PID控制研究

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This paper built a power transmission model based on Parallel Hybrid Electric Vehicle (PHEV). Based on this model, the Kalman filtering algorithm which was used to estimate the clutch transmitting torque was derived by the state vector which consist of the engine rotation torque and speed. The PID controller which was built based on the Kalman filtering was used to control the deviation between estimated torque and target torque. And the control errors are analyzed by comparing the controlled values and simulated values of the clutch torque at vehicle starting process by engine-driven. The conclusion show that the PID controller has the sufficient accuracy and response speed. Therefore, the PID controller of clutch transmitting torque are feasible.
机译:本文建立了一种基于并联混合动力电动车(PHEV)的动力传输模型。基于该模型,用于估计离合器传递扭矩的卡尔曼滤波算法由由发动机旋转扭矩和速度组成的状态矢量来导出。基于Kalman滤波构建的PID控制器用于控制估计扭矩和目标扭矩之间的偏差。通过在通过发动机驱动的车辆启动过程中的控制值和离合器扭矩的控制值和模拟值进行分析来分析控制误差。结论表明,PID控制器具有足够的精度和响应速度。因此,离合器传递扭矩的PID控制器是可行的。

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