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A comparative study in the semi-active control of isolated structures

机译:隔震结构半主动控制的比较研究

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A comparative analytical and experimental study of several algorithms for the control of seismically excited floor- and base-isolated structures is pursued in the current study. A hybrid isolation system that is comprised of a bidirectional roller-pendulum system (RPS) and augmented by controllable magnetorheological ( MR) dampers is proposed to reduce the potential for damage to structures and sensitive equipment. Bidirectional motions are intelligently ameliorated in real time by the modulation of MR damper resistance. A Bouc-Wen model is adopted in numerical and experimental trials to predict behavior of the MR dampers. Three contrasting control techniques are examined. They include neural network control, LQR/clipped optimal control with variable gains and fuzzy logic control. Each control scheme is a candidate for mitigating the response of a superstructure to near- and far-field seismic loadings. Minimization of displacement and acceleration responses of the structure are considered in the formulation of each approach to control. Results of the numerical and large-scale experimental efforts reveal that the response of the isolated structure is effectively alleviated by all of the considered control methods, although they do not perform equally well. The LQR/clipped optimal controller with variable gains is superior to the other controllers in 50% of the investigated cases, while the fuzzy logic controller performs well for earthquakes with large accelerations. Neural network control is found to be effective in minimizing the acceleration of the superstructure that is subject to moderate excitation.
机译:在当前研究中,进行了几种控制地震激励的地板和基础隔离结构的算法的比较分析和实验研究。提出了一种混合隔离系统,该系统由双向滚子摆系统(RPS)组成,并通过可控磁流变(MR)阻尼器进行增强,以减少损坏结构和敏感设备的可能性。通过调节MR阻尼器电阻,可以实时智能地改善双向运动。在数值和实验试验中采用Bouc-Wen模型来预测MR阻尼器的性能。研究了三种对比控制技术。它们包括神经网络控制,具有可变增益的LQR /限幅最优控制和模糊逻辑控制。每种控制方案都是减轻上层建筑对近场和远场地震荷载的响应的候选方案。每种控制方法的制定都考虑了结构位移和加速度响应的最小化。数值和大规模实验工作的结果表明,尽管考虑到的控制方法性能不佳,但所有考虑的控制方法均可以有效地缓解隔离结构的响应。在50%的调查案例中,具有可变增益的LQR /夹钳式最优控制器优于其他控制器,而模糊逻辑控制器在加速度较大的地震中表现良好。发现神经网络控制在使经受中等激发的上部结构的加速度最小化方面是有效的。

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