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Semi-active structural fuzzy control with MR dampers subjected to near-fault ground motions having forward directivity and fling step

机译:具有前向指向性和跳动阶跃的近故障地面运动的MR阻尼器半主动结构模糊控制

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Semi-active control equipments are used to effectually enhance the seismic behavior of structures. Magneto-rheological (MR) dampers are semi-active devices that can be utilized to control the response of structures during seismic loads and have received voracious attention for response suppression. They supply the adaptability of active devices and stability and reliability of passive devices. This paper presents an optimal fuzzy logic control scheme for vibration mitigation of buildings using magneto-rheological dampers subjected to near-fault ground motions. Near-fault features including a directivity pulse in the fault-normal direction and a fling step in the fault-parallel direction are considered in the requisite ground motion records. The membership functions and fuzzy rules of fuzzy controller were optimized by genetic algorithm (GA). Numerical study is performed to analyze the influences of near-fault ground motions on a building that is equipped with MR dampers. Considering the uncontrolled system response as the base line, the proposed method is scrutinized by analogy with that of a conventional maximum dissipation energy (MED) controller to accentuate the effectiveness of the fuzzy logic algorithm. Results reveal that the fuzzy logic controllers can efficiently improve the structural responses and MR dampers are quite promising for reducing seismic responses during near-fault earthquakes.
机译:半主动控制设备用于有效增强结构的抗震性能。磁流变(MR)阻尼器是半主动式设备,可用于控制地震荷载下结构的响应,并受到了广泛的关注以抑制响应。它们提供了有源设备的适应性以及无源设备的稳定性和可靠性。本文提出了一种采用磁流变阻尼器来减轻建筑物近震时的振动的最佳模糊逻辑控制方案。在必要的地面运动记录中考虑到了近断层特征,包括在断层法线方向上的方向性脉冲和在断层平行方向上的跳阶。利用遗传算法对模糊控制器的隶属函数和模糊规则进行了优化。进行了数值研究,以分析近断层地面运动对装有MR阻尼器的建筑物的影响。以不受控制的系统响应为基线,通过与常规最大耗散能量(MED)控制器的类比,仔细审查了所提出的方法,以强调模糊逻辑算法的有效性。结果表明,模糊逻辑控制器可以有效地改善结构响应,而MR阻尼器对于降低近断层地震期间的地震响应具有很大的前景。

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