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Self-Tuning Fuzzy Control for Seismic Protection of Smart Base-Isolated Buildings Subjected to Pulse-Type Near-Fault Earthquakes

机译:脉冲型近端地震脉冲型近地区静态底座隔离建筑地震保护自调整模糊控制

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Pulse-type near-fault earthquakes have obvious long-duration pulses, so they can cause large deformation in a base-isolated system in contrast to non-pulse-type near-fault and far-field earthquakes. This paper proposes a novel self-tuning fuzzy logic control strategy for seismic protection of a base-isolated system, which can operate the control force of the piezoelectric friction damper against different types of earthquakes. This control strategy employs a hierarchic control algorithm, in which a higher-level supervisory fuzzy controller is implemented to adjust the input normalization factors and output scaling factor, while a sub-level fuzzy controller effectively determines the command voltage of the piezoelectric friction damper according to current level of earthquakes. The efficiency of the proposed control strategy is also compared with uncontrolled and maximum passive cases. Numerical results reveal that the novel fuzzy logic control strategy can effectively reduce the isolation system deformations without the loss of potential advantages of base-isolated system.
机译:脉冲型近故障地震具有明显的长持续时间脉冲,因此它们可以与非脉冲型接近故障和远场地震相比,它们可以在底座隔离系统中引起大变形。本文提出了一种新型自调整模糊逻辑控制策略,用于基地隔离系统的地震保护,这可以操作压电摩擦阻尼器对不同类型地震的控制力。该控制策略采用分层控制算法,其中实现了更高级别的监控模糊控制器以调整输入归一化因子和输出缩放因子,而子级模糊控制器有效地确定压电摩擦阻尼器的命令电压目前的地震水平。拟议的控制策略的效率也与不受控制和最大无源案例进行了比较。数值结果表明,新颖的模糊逻辑控制策略可以有效地降低隔离系统变形,而不会损失基部隔离系统的潜在优势。

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