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Method for Identification of the Kiss Point as well as Takeoff Point of a Hydraulically Actuated Friction Clutch

机译:用于识别吻点的方法以及液压致动摩擦离合器的起飞点

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For control of most automatic transmissions with wet clutches (e.g. dual clutch transmission), it is important to know the kiss point with high accuracy. The kiss point describes the value of the control variable for which the friction clutch begins to transmit torque. Another significant value during the filling process of a wet clutch is the takeoff point. This is the hydraulic pressure which causes the clutch piston to begin to move. This paper presents an innovative approach that enables the joint determination of the kiss point as well as the takeoff point in only one identification procedure. In contrast to existing methods, this method is able to identify both points without the necessity for undesired auxiliary system excitation. Therefore it is possible to reduce wear on system components such as synchronization rings. The method presented in this paper analyzes the measured filling pressure characteristic over time as the system response to a defined excitation. The innovation of this method consists of dividing this pressure characteristic into three phases, where the separation is motivated by physical considerations. Each of these phases is approximated by appropriate linear and nonlinear functions. With the help of offline methods for system identification, the parameters of the approximation function are adjusted to reach the optimal approximation of the pressure characteristic. The takeoff point and the kiss point are distinct points between the approximating functions of the neighboring phases of the filling pressure characteristic. These points can be analytically determined for all phases of the characteristic. The choice of a suitable identification method has to take into account the electronic control units used for transmission control in modern vehicles and the capabilities they have. These methods are designed to work with noisy signals and allow for the accurate determination of the system parameters.
机译:控制具有湿离合器的最自动变速器(例如双离合器传输),重要的是要高精度地了解吻点。吻点描述摩擦离合器开始发动扭矩的控制变量的值。湿离合器的填充过程中的另一个显着值是起飞点。这是导致离合器活塞开始移动的液压。本文介绍了一种创新的方法,可以在只有一个识别程序中联合确定接吻点以及起飞点。与现有方法相比,这种方法能够识别两个点,而不需要不需要的辅助系统激励。因此,可以减少系统部件的磨损,例如同步环。本文所呈现的方法分析了测量的填充压力特性随着时间的推移,随着系统的响应于定义的激励。该方法的创新包括将该压力分为三个阶段,其中分离是通过物理考虑的激励。这些阶段中的每一个由适当的线性和非线性函数近似。借助离线方法进行系统识别,调整近似函数的参数以达到压力特性的最佳逼近。起飞点和接吻点是填充压力特性的相邻阶段的近似函数之间的明显点。这些点可以针对特征的所有阶段进行分析确定。选择合适的识别方法必须考虑到用于现代车辆中的传输控制的电子控制单元以及它们具有的能力。这些方法旨在使用嘈杂的信号,允许准确确定系统参数。

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