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Estimation of the Clutch Characteristic Map for an Automated Wet Friction Clutch Transmission

机译:用于自动湿摩擦离合器变速器的离合器特性图的估计

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Higher demands on comfort and efficiency require a continuous improvement of the shift process. During the launch and shift process the clutch control is used to get a smooth and efficient behavior. In this short time of acting the shifting behavior can be rated. Many control concepts use a clutch characteristic to calculate the actuator signal based on the clutch torque. Therefore, a high quality of this characteristic is necessary. Because of the dynamic process during clutch engagement the clutch characteristic needs further information to reach a high accuracy for the control algorithm. In this paper an existing clutch torque characteristic is extended to a characteristic map where the clutch torque becomes a function of the current actuator signal of the clutch and the clutch slip. The extension of the torque characteristic describes the slip based dependencies, e.g. the friction coefficient. The model of the characteristic map consists of the multiplication of two separate functions in these two dimensions. The parameters of this model are estimated using different identification algorithms, in this case a non-linear recursive and a non-recursive identification algorithm. Both estimation algorithms result in a characteristic map of the clutch behavior. A further advantage of the presented approach is the normalization during the estimation process of the slip-based function with the cost function. Thus, the original torque characteristic can be used as fallback if the identification of the slip-based part still need reference data to converge or shows an implausible behavior.
机译:对舒适性和效率的更高要求需要持续改进换档过程。在发射和换档过程中,离合器控制用于获得平滑和高效的行为。在这种表现出换档行为的短时间内可以评定。许多控制概念使用离合器特性来基于离合器扭矩计算致动器信号。因此,需要高质量的这种特性。由于在离合器接合期间的动态过程,离合器特性需要进一步的信息来达到控制算法的高精度。在本文中,现有的离合器扭矩特性延伸到离合器扭矩成为离合器和离合器滑动的电流致动器信号的函数的特征图。扭矩特性的延伸描述了基于滑动的依赖性,例如,摩擦系数。特征图的模型包括在这两个维度中的两个单独功能的乘法。使用不同的识别算法估计该模型的参数,在这种情况下是非线性递归和非递归识别算法。两个估计算法都导致离合器行为的特征图。所提出的方法的另一个优点是在具有成本函数的基于滑动函数的估计过程中的归一化。因此,如果滑动部分的识别仍需要参考数据以收敛或显示难以置信的行为,则原始扭矩特性可以用作回退。

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