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System Modeling and Pressure Control of a Clutch Actuator for Heavy-Duty Automatic Transmission Systems

机译:重型自动变速器系统离合器执行器的系统建模和压力控制

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Precision control of clutch pressure is critical in heavy-duty automatic transmission applications in which the fast response of the clutch actuator is required. A conventional clutch actuator system with a pressure-reducing valve (PRV) is not applicable in this kind of application due to the fact that a large transient flow and high output power for power-on shift are necessary. In this paper, a pilot-operated PRV is developed for heavy-duty automatic transmission systems. The developed PRV can make the clutch actuator system have a fast response and a high flow capacity simultaneously. The PRV utilizes a three-stage structure with a high-speed proportional solenoid valve (PSV) as the pilot stage to do the tradeoff between the valve response and the flow capacity. First, a linearized input–output dynamic analytical model for the clutch pressure control system is developed based on fluid dynamics. Then, the parameters are identified, and the model is validated by using experimental data. For the validated input–output model, both open- and closed-loop (feedback) pressure control strategies are designed and implemented in a test setup. It infers from the experimental results that the feedback control can lead to excellent control precision. The developed clutch actuator system is applicable for heavy-duty automatic transmissions.
机译:在需要离合器执行器快速响应的重型自动变速器应用中,离合器压力的精确控制至关重要。传统的具有减压阀(PRV)的离合器执行器系统不适用于这种应用,因为需要大的瞬变流量和高功率以进行动力换档。在本文中,为重型自动变速器系统开发了先导式PRV。研发的PRV可以使离合器执行器系统同时具有快速响应和高流量的能力。 PRV采用三级结构,并以高速比例电磁阀(PSV)作为先导级,在阀响应和流量之间进行权衡。首先,基于流体动力学,为离合器压力控制系统开发了线性化的输入输出动态分析模型。然后,确定参数,并使用实验数据验证模型。对于经过验证的输入输出模型,开环和闭环(反馈)压力控制策略都是在测试设置中设计和实现的。从实验结果可以看出,反馈控制可以带来极好的控制精度。研发的离合器执行器系统适用于重型自动变速器。

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