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Dynamic Analysis and Closed-loop Shifting Control of EF-Automatic Transmission with Proportional Control Solenoid Valves

机译:比例控制电磁阀EF自动变速器动态分析及闭环移位控制

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Nowadays, most automatic transmissions of passenger car adopt an electronically controlled shifting mechanism to enhance the driveability and fuel economy. As the performance requirement, especially on shift quality, of automatic transmission become rigorous in recent years, power train engineers have made an great effort to improve ride comfort during shift. EF-automatic transmissions for FWD passenger car, installed in Hyundai's EF-sonata model, are originally developed by Mitsubishi Motor Company and equipped with full electronic control system. Its major design features are that clutch-to-clutch shifting mechanism is employed for simplified construction and lighter weight and four independently operated PWM solenoid valves control the applying pressure on the friction elements during shift. In this paper, EF-automatic transmission was redesigned with proportional control solenoid valves of which control pressures are directly applied to control elements and modified transmission was tested on transmission-dynamometer to prove the shifting performance of proposed electrohydraulic control system. We established a dynamic model of EF-automatic transmission power train to investigate the shifting characteristics and proposed a open-loop pressure control strategy during torque phase in terms of power train static torque analysis and designed a closed-loop controller that is based on the linearized turbine dynamics model during inertia phase. From the experimental results conducted with modified EF-automatic transmission in which proportional control solenoid valves are employed, we verified the validity of the proposed shifting control algorithm and concluded that shifting quality could be improved with the use of proportional control solenoids.
机译:如今,乘用车的大多数自动变速器采用电子控制的移位机构,以增强驾驶能力和燃油经济性。随着近年来自动变速器的自动变速器的性能要求,特别是自动变速器变得严格,电力列车工程师们努力在转变期间提高速度舒适。 FWD乘用车的EF自动变速器安装在现代的EF-SONATA模型,最初由三菱汽车公司开发,配备了全电子控制系统。其主要的设计特征是采用离合器到离合器换档机构用于简化结构和较轻的重量,并且四个独立操作的PWM电磁阀在换档期间控制摩擦元件上的施加压力。本文通过比例控制电磁阀重新设计了EF自动变速器,其中控制压力直接施加到控制元件上,并在透射测功机上测试改进的传动,以证明提出的电液控制系统的变速性能。我们建立了EF自动变速箱动力系的动态模型,以研究转换特性,并在动力传动系统静态扭矩分析方面提出了在扭矩相位期间的开环压力控制策略,并设计了基于线性化的闭环控制器涡轮机动力学模型在惯性阶段。从采用比例控制电磁阀的改性EF自动变速器进行的实验结果,我们验证了所提出的移位控制算法的有效性,并得出结论,使用比例控制螺线管可以改善变速质量。

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