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首页> 外文期刊>Journal of Zhejiang University SCIENCE A >Proportional-integral-derivative control of nonlinear half-car electro-hydraulic suspension systems
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Proportional-integral-derivative control of nonlinear half-car electro-hydraulic suspension systems

机译:非线性半车电液悬挂系统的比例积分微分控制

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摘要

This paper presents the development of a proportional-integral-derivative (PID)-based control method for application to active vehicle suspension systems (AVSS). This method uses an inner PID hydraulic actuator force control loop, in combination with an outer PID suspension travel control loop, to control a nonlinear half-car AVSS. Robustness to model uncertainty in the form of variation in suspension damping is tested, comparing performance of the AVSS with a passive vehicle suspension system (PVSS), with similar model parameters. Spectral analysis of suspension system model output data, obtained by performing a road input disturbance frequency sweep, provides frequency response plots for both nonlinear vehicle suspension systems and time domain vehicle responses to a sinusoidal road input disturbance on a smooth road. The results show the greater robustness of the AVSS over the PVSS to parametric uncertainty in the frequency and time domains.
机译:本文提出了一种基于比例积分微分(PID)的控制方法,该方法可应用于主动车辆悬架系统(AVSS)。该方法使用内部PID液压致动器力控制回路,以及外部PID悬架行程控制回路,来控制非线性半厢式AVSS。测试了对悬架阻尼变化形式的不确定性进行建模的鲁棒性,将AVSS与无源车辆悬架系统(PVSS)的性能进行了比较,并具有相似的模型参数。通过执行道路输入扰动频率扫描而获得的悬架系统模型输出数据的频谱分析,可为非线性车辆悬架系统和时域车辆对平滑道路上正弦道路输入扰动的响应提供频率响应图。结果表明,相对于PVSS,AVSS对频域和时域中的参数不确定性具有更高的鲁棒性。

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  • 来源
    《Journal of Zhejiang University SCIENCE A》 |2013年第6期|401-416|共16页
  • 作者单位

    School of Mechanical Aeronautical and Industrial Engineering University of the Witwatersrand">(1);

    School of Mechanical Aeronautical and Industrial Engineering University of the Witwatersrand">(1);

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  • 正文语种 eng
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