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Multiobjective optimal FLC driven hybrid mass damper system for torsionally coupled, seismically excited structures

机译:扭转耦合,地震激励结构的多目标最优FLC驱动混合质量阻尼器系统

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摘要

In most of the research work on structural vibration control only two-dimensional plane structural modelling has been considered, although only a few practical building structures can be modelled as planar structures. Therefore, these methods are not directly applicable to the majority of the practical building structures. This paper discusses the design of a multiobjective optimal fuzzy logic controller (FLC) driven hybrid mass damper (HMD) system for seismically excited torsionally coupled building structures. Floor acceleration and velocity information have been used as feedback to the fuzzy logic controller. A three branch tournament Genetic Algorithm has been used for the multiobjective optimal design of the FLC driven HMD system, where the minimization of the non-dimensionalized peak displacement, acceleration and rotation of the structure about its vertical axis, have been as the three objective functions. The proposed multiobjective optimal fuzzy logic controller has been verified for an example problem reported in the literature. This HMD system consists of four HMDs arranged in such a way that the system can control the torsional mode of vibration effectively in addition to the flexure modes of vibration.
机译:在大多数有关结构振动控制的研究工作中,尽管只有少数实用的建筑结构可以建模为平面结构,但只考虑了二维平面结构建模。因此,这些方法不适用于大多数实际建筑结构。本文讨论了地震激励扭转耦合建筑结构的多目标最优模糊逻辑控制器(FLC)驱动的混合质量阻尼器(HMD)系统的设计。地板加速度和速度信息已用作对模糊逻辑控制器的反馈。三分支比赛遗传算法已用于FLC驱动的HMD系统的多目标优化设计,其中无量纲的峰位移,结构绕其垂直轴的加速和旋转的最小化已作为三个目标函数。所提出的多目标最优模糊逻辑控制器已经针对文献中报道的示例问题进行了验证。该HMD系统由四个HMD组成,这些HMD的排列方式使得该系统除了可以控制振动的挠曲模式之外,还可以有效地控制振动的扭转模式。

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