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Fuzzy Control of Double-Layer Spherical Shell Structure under Seismic Response

机译:地震作用下双层球壳结构的模糊控制

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摘要

The reticulated shell structure has high degree of geometric non-linearity, and time-variety of stiffness and damping under seismic response. Fuzzy control has better control effect for the system of time-varying parameters, nonlinearity and strong coupling. Recognizing this, fuzzy control method is proposed to apply to MR damper, and the vibration control analysis of shell structure is carried out based on the method. According to the basic principle of fuzzy control, for the general Bouc-Wen model as the mechanical model of MR damper, the fuzzy controller for MR damping structure is designed by the fuzzy control toolbox and the Simulink block in MATLAB, and the fuzzy control analysis of the span 60 meters of double-layer spherical shell structure is carried out under seismic response. The results show that: for the vertex and the node of rod piece on which MR damper installed of the shell structure under fuzzy control, the peak value of displacement, velocity and acceleration are averagely decreased by 56.8% in comparison with no control structure, the control effect is remarkable, so the MR fuzzy controller is demonstrated to be effective and reliable.
机译:网壳结构具有高度的几何非线性,并且在地震响应下的刚度和阻尼随时间变化。模糊控制对时变参数,非线性和强耦合系统具有较好的控制效果。认识到这一点,提出了一种适用于MR阻尼器的模糊控制方法,并基于该方法对壳体结构进行了振动控制分析。根据模糊控制的基本原理,针对一般的Bouc-Wen模型作为MR阻尼器的力学模型,利用MATLAB中的模糊控制工具箱和Simulink模块设计了MR阻尼结构的模糊控制器,并进行了模糊控制分析。在地震反应下进行了跨度为60米的双层球壳结构的设计。结果表明:对于在模糊控制下壳结构安装了MR阻尼器的杆件的顶点和节点,与无控制结构相比,位移,速度和加速度的峰值平均降低了56.8%。控制效果显着,因此证明了MR模糊控制器是有效和可靠的。

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