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Dynamic modeling of a variable force solenoid and a clutch for hydraulic control in vehicle transmission system

机译:车辆传动系统中用于液压控制的变力螺线管和离合器的动态建模

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A control oriented solenoid and clutch model for a passenger car automatic transmission is presented. The model captures the essential dynamics of the variable force solenoid and clutch circuit, which operates on a given pressure range commanded by transmission shifting signal. Based on the hardware design parameters and experimental measurements, a nonlinear low frequency model is developed using SIMULINK/sup MT/. The model simulates the key phenomena of the component, such as pressure filling and stroking of the clutch during engagement. Comparing to the first principal models described in other publications, the simple structure and closed form of this model provides a computational test bench for control analysis. The model is validated against the data obtained from a FORD modified CD4E transaxle and the comparison shows a good agreement. The nonlinearity and the time delay presented in the model suggests that a controller other than conventional PID should be considered when designing the control strategy.
机译:提出了一种用于乘用车自动变速器的面向控制的螺线管和离合器模型。该模型捕获了可变力螺线管和离合器回路的基本动态特性,该可变动力螺线管和离合器回路在变速箱换档信号指示的给定压力范围内运行。根据硬件设计参数和实验测量结果,使用SIMULINK / sup MT /开发了非线性低频模型。该模型模拟了零件的关键现象,例如在接合过程中离合器的压力填充和冲程。与其他出版物中描述的第一个主要模型相比,该模型的简单结构和封闭形式为控制分析提供了计算测试平台。对照从FORD改良的CD4E驱动桥获得的数据验证了该模型,并且比较显示出很好的一致性。模型中呈现的非线性和时间延迟表明,在设计控制策略时,应考虑使用常规PID以外的控制器。

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