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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Vibration control of vehicle suspension system featuring ER shock absorber
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Vibration control of vehicle suspension system featuring ER shock absorber

机译:带有ER减震器的车辆悬架系统的振动控制

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摘要

This paper presents vibration control responses of a passenger vehicle equipped with continuously controllable electrorheological (ER) shock absorbers. As a first step, ER shock absorbers are designed based on the damping force levels and mechanical dimensions required for a middle-sized passenger vehicle. This is accomplished using a graphic user interface (GUI)-based design program which is developed for automotive ER application devices. After evaluating the field-dependent damping force property and controllability on the design program, ER shock absorbers are manufactured and incorporated with the suspension of the quarter vehicle prior to the road test. A skyhook control algorithm is formulated and experimentally realized for the quarter vehicle ER suspension system. Subsequently, the middle-sized passenger vehicle equipped with four ER shock absorbers (two for front parts and two for rear parts), high voltage amplifies and sensors is prepared and road test is undertaken under various road conditions. Control responses are evaluated in both time and frequency domains.
机译:本文介绍了配备有连续可控电流变(ER)减震器的乘用车的振动控制响应。第一步,根据中型乘用车所需的阻尼力水平和机械尺寸设计ER减震器。这是通过为汽车ER应用设备开发的基于图形用户界面(GUI)的设计程序来完成的。在根据设计程序评估了与现场有关的阻尼力特性和可控性之后,制造了ER减震器,并将其与四分之一车辆的悬架结合起来,然后进行路试。为四分之一车辆的ER悬架系统制定了天钩控制算法并通过实验实现。随后,中型乘用车配备了四个ER减震器(前部两个,后部两个),高压放大器和传感器,并在各种路况下进行了路试。在时域和频域均评估了控制响应。

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