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首页> 外文期刊>Journal of Vibration and Acoustics >Semi-Active Static Output Feedback Variable Structure Control for Two-Stage Vibration Isolation System
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Semi-Active Static Output Feedback Variable Structure Control for Two-Stage Vibration Isolation System

机译:两级隔振系统的半主动静态输出反馈变结构控制

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摘要

A semi-active static output feedback variable structure control (VSC) strategy is presented to control a two-stage vibration isolation system in this paper. A continuous output feedback VSC controller which utilizes the measurements from a limited number of sensors installed at strategic locations is designed and a bypass electrorheological (ER) damper is applied to achieve the best control effect more rapidly and accurately. The determination of sliding surface in terms of the Routh-Hurwitz stability criterion is combined with continuous controller design such that the control law is completely decoupled from external excitations, which are hard to measure or estimate. The self-adaptability of the vibration isolation system with respect to external disturbances, the robustness of the control method with respect to parameter variations and the effectiveness of vibration isolation are demonstrated by numerical simulation results. It showed that the designed semi-active static output feedback VSC strategy realized by the ER damper can achieve better performance than those of optimally passive damping and maximum damping variety even if system parameter uncertainties exist.
机译:提出了一种控制两阶段隔振系统的半主动静态输出反馈变结构控制策略。设计了一个连续输出反馈VSC控制器,该控制器利用了安装在关键位置的有限数量传感器的测量值,并应用了旁路电流变(ER)阻尼器,以更快,更准确地实现最佳控制效果。根据Routh-Hurwitz稳定性准则确定滑动面与连续控制器设计相结合,从而使控制律与难以测量或估计的外部激励完全脱开。数值仿真结果表明了隔振系统对外界干扰的自适应性,控制方法对参数变化的鲁棒性以及隔振的有效性。结果表明,即使存在系统参数不确定性,ER阻尼器实现的半主动静态输出反馈VSC控制策略也能达到最优被动阻尼和最大阻尼变化的性能。

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