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Vibration Control of Buildings Using Magnetorheological Damper: A New Control Algorithm

机译:使用磁流变阻尼器的建筑物振动控制:一种新的控制算法

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This paper presents vibration control of a building model under earthquake loads. A magnetorheological (MR) damper is placed in the building between the first floor and ground for seismic response reduction. A new control algorithm to command the MR damper is proposed. The approach is inspired by a quasi-bang-bang controller; however, the proposed technique gives weights to control commands in a fashion that is similar to a fuzzy logic controller. Several control algorithms including decentralized bang-bang controller, Lyapunov controller, modulated homogeneous friction controller, maximum energy dissipation controller, and clipped-optimal controller are used for comparison. The new controller achieved the best reduction in maximum interstory drifts and maximum absolute accelerations over all the control algorithms presented. This reveals that the proposed controller with the MR damper is promising and may provide the best protection to the building and its contents.
机译:本文提出了地震荷载作用下建筑模型的振动控制。磁流变(MR)阻尼器放置在建筑物的第一层和地面之间,以减少地震响应。提出了一种新的控制MR阻尼器的控制算法。该方法的灵感来自于准爆炸控制器。然而,所提出的技术以类似于模糊逻辑控制器的方式为控制命令赋予权重。比较使用了分散控制的Bang-bang控制器,Lyapunov控制器,调制均匀摩擦控制器,最大能量耗散控制器和限幅最优控制器等几种控制算法。在介绍的所有控制算法中,新控制器均实现了最大层间漂移和最大绝对加速度的最佳降低。这表明所提出的带有MR阻尼器的控制器是有前途的,并且可以为建筑物及其内容提供最佳保护。

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