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Ride Performance Analysis of Half-Car Model for Semi-Active System Using RMS as Performance Criteria

机译:基于RMS作为性能指标的半主动系统半车模型乘车性能分析

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The work aims to study the root mean square (RMS) responses to acceleration input for four state variables: the msvertical acceleration, the mspitch angular acceleration and the front and rear deflections of the suspensions. A half-car two degree-of-freedom model of semi-active control scheme is analyzed and compared with the conventional passive suspension system. Frequency response of the transfer function for the heave, pitch of the sprung mass and suspension deflections are initially compared and then mean square analysis is utilized to see the effect of semi-active scheme. Results indicate that significant improvements were achieved in the sprung mass heave and pitch responses using semi-active control scheme. However results for the rear and front suspension deflection show that there are limiting values of damping coefficient beyond which, the semi-active scheme becomes disadvantageous than the passive system.
机译:这项工作旨在研究四个状态变量对加速度输入的均方根(RMS)响应:垂直加速度,mspitch角加速度以及悬架的前后偏转。对半主动半主动控制方案的半车两自由度模型进行了分析,并与传统的被动悬架系统进行了比较。首先对升沉传递函数的频率响应,簧载质量的音调和悬架挠度进行比较,然后利用均方分析来观察半主动方案的效果。结果表明,使用半主动控制方案可以显着改善簧上质量的升沉和俯仰响应。但是,后悬架和前悬架挠度的结果表明,存在阻尼系数的极限值,超过该极限值,半主动方案比被动系统不利。

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