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Simulation and control of an electro-hydraulic actuated clutch

机译:电动液压致动离合器的仿真和控制

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摘要

The basic function of any type of automotive transmission is to transfer the engine torque to the vehicle with the desired ratio smoothly and efficiently and the most common control devices inside the transmission are clutches and hydraulic pistons. The automatic control of the clutch engagement plays a crucial role in Automatic Manual Transmission (AMT) vehicles, being seen as an increasingly important enabling technology for the automotive industry. It has a major role in automatic gear shifting and traction control for improved safety, drivability and comfort and, at the same time, for fuel economy. In this paper, a model for a wet clutch actuated by an electro-hydraulic valve used by Volkswagen for automatic transmissions is presented. Starting from the developed model, a simulator was implemented in Matlab/Simulink and the model was validated against data obtained from a test-bench provided by Continental Automotive Romania, which includes the Volkswagen wet clutch actuated by the electro-hydraulic valve. Then, a predictive control strategy is applied to the model of the electro-hydraulic actuated clutch with the aims of controlling the clutch piston displacement and decreasing the influence of the network-induced delays on the control performances. The simulation results obtained with the proposed method are compared with the ones obtained with different networked controllers and it is shown that the strategy proposed in this paper can indeed improve the performances of the control system.
机译:任何类型的汽车变速器的基本功能都是以所需比率平稳有效地将发动机扭矩传递到车辆,变速器内部最常见的控制装置是离合器和液压活塞。离合器接合的自动控制在自动手动变速箱(AMT)车辆中起着至关重要的作用,被视为汽车工业中越来越重要的使能技术。它在自动换档和牵引力控制中起着重要作用,以提高安全性,驾驶性能和舒适性,并同时提高燃油经济性。在本文中,提出了一种由大众用于自动变速器的电动液压阀致动的湿式离合器的模型。从开发的模型开始,在Matlab / Simulink中实施了模拟器,并根据从Continental Continental Romania提供的测试台获得的数据对模型进行了验证,该测试台包括由电动液压阀致动的大众湿式离合器。然后,将预测控制策略应用于电动液压致动离合器的模型,目的是控制离合器活塞的排量并减少网络引起的延迟对控制性能的影响。将所提方法的仿真结果与不同网络控制器的仿真结果进行了比较,结果表明本文提出的策略确实可以改善控制系统的性能。

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