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首页> 外文期刊>Journal of intelligent material systems and structures >A Two-stage Floating Raft Isolation System Featuring Eleetrorheological Damper With Semi-active Fuzzysliding Mode Control
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A Two-stage Floating Raft Isolation System Featuring Eleetrorheological Damper With Semi-active Fuzzysliding Mode Control

机译:具有流变阻尼器和半主动模糊滑模控制的两阶段浮筏隔离系统

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摘要

In this article, a semi-active fuzzy sliding mode control (FSMC) strategy for the vibration attenuation is presented based on the fact that for two-stage eleetrorheological (ER) damper floating raft isolation system, the upper bounds for uncertainty external disturbance and the parameters perturbation are hard to estimate in advance, and the damping force of ER damper is controlled continuously. The parameters of sliding surface are selected based on Hurwitz stable judgement of sliding mode motion equation. Fuzzy controller is designed in terms of the sliding mode reaching condition and the maximal damping force of ER damper. The optimal vibration attenuation of the intermediate mass is guaranteed due to the control rule that damping force only dissipates the vibration energy of the main object. The robustness of the proposed semi-active FSMC method with respect to parameter variations and the effectiveness of the controller designed in this study are demonstrated by numerical simulation. It showed that the proposed semi-active FSMC strategy realized by the ER damper can achieve better performance than those of optimally passive damping and maximum damping variety even if system parameter variations exist. In addition, the experiment was carried out to demonstrate the practical effectiveness of the presented control scheme in this study. The experimental results are satisfied.
机译:本文针对两级流变(ER)阻尼器浮筏隔振系统,不确定性外部扰动的上限和噪声的限制,提出了一种用于振动衰减的半主动模糊滑模控制(FSMC)策略。很难预先估计参数的扰动,并且对ER阻尼器的阻尼力进行连续控制。基于Hurwitz滑模运动方程的稳定判断,选择滑模参数。针对滑模达到条件和ER阻尼器的最大阻尼力设计了模糊控制器。由于阻尼力仅耗散主要物体的振动能量的控制规则,保证了中间质量的最佳振动衰减。通过数值仿真证明了所提出的半主动FSMC方法相对于参数变化的鲁棒性以及本研究设计的控制器的有效性。结果表明,即使存在系统参数变化,由ER阻尼器实现的半主动FSMC策略也能获得比最优被动阻尼和最大阻尼变化更好的性能。此外,进行了实验以证明本研究中提出的控制方案的实际有效性。实验结果令人满意。

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