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Fuzzy control for nonlinear structure with semi-active friction damper

机译:半主动摩擦阻尼器对非线性结构的模糊控制

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The implementation of semi-active friction damper for vibration mitigation of seismic structure generally requires an efficient control strategy. In this paper, the fuzzy logic based on Takagi-Sugeno model is proposed for controlling a semi-active friction damper that is installed on a nonlinear building subjected to strong earthquakes. The continuous Bouc-Wen hysteretic model for the stiffness is used to describe nonlinear characteristic of the building. The optimal sliding force with friction damper is determined by nonlinear time history analysis under normal earthquakes. The Takagi-Sugeno fuzzy logic model is employed to adjust the clamping force acted on the friction damper according to the semi-active control strategy. Numerical simulation results demonstrate that the proposed method is very efficient in reducing the peak inter-story drift and acceleration of the nonlinear building structure under earthquake excitations.
机译:为减轻地震结构的振动而采用半主动式摩擦阻尼器通常需要一种有效的控制策略。本文提出了一种基于高木-苏格诺模型的模糊逻辑,用于控制半主动摩擦阻尼器,该阻尼器安装在遭受强烈地震的非线性建筑物上。刚度的连续Bouc-Wen滞后模型用于描述建筑物的非线性特征。在正常地震下,通过非线性时程分析确定了带有摩擦阻尼器的最佳滑动力。采用Takagi-Sugeno模糊逻辑模型,根据半主动控制策略来调整作用在摩擦阻尼器上的夹紧力。数值模拟结果表明,所提出的方法在减少地震激励下非线性建筑结构的峰值层间位移和加速度方面非常有效。

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