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Hybrid active mass damper (AMD) vibration suppression of nonlinear high-rise structure using fuzzy logic control algorithm under earthquake excitations

机译:地震激励下基于模糊逻辑控制算法的非线性高层混合动力阻尼器的振动抑制

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摘要

Active mass damper (AMD) control of civil structures has attracted much attention in recent years. However, there are few researches on the control of nonlinear structure using AMD under earthquake excitation, especially for high-rise building. In this paper, a fuzzy logic-based control algorithm was developed to control a nonlinear high-rise structure under earthquake excitation using AMD device. For the control of a high-rise building under earthquake excitation, due to the complexity of vibration modes, many inputs are needed for the fuzzy controller, and this may cause the explosion of fuzzy rules. To solve this problem, generalized inputs for fuzzy control were proposed by considering all the states of the structure based on a quadratic performance index. An AMD control system may magnify the interstory drift of a high-rise nonlinear building, which is regarded as Interstory Response Amplification (IRA) phenomenon. To avoid this problem, a control scheme of using both an AMD and interstory dampers was proposed to control the nonlinear vibration of a high-rise structure. We used a 20-story Benchmark nonlinear structure for the numerical studies. Numerical simulations show that the combination of an AMD and interstory dampers can eliminate the IRA phenomenon and achieve better vibration suppression than either an AMD alone or interstory dampers alone, in not only displacements relative to ground but also interstory response. Copyright © 2010 John Wiley & Sons, Ltd.
机译:近年来,主动质量阻尼器(AMD)对土木结构的控制引起了广泛的关注。但是,关于在地震激励下使用AMD控制非线性结构的研究很少,特别是在高层建筑中。本文提出了一种基于模糊逻辑的控制算法,利用AMD装置在地震激励下控制非线性高层结构。对于高层建筑在地震激励下的控制,由于振动模式的复杂性,模糊控制器需要很多输入,这可能导致模糊规则的爆炸。为了解决这个问题,基于二次性能指标,通过考虑结构的所有状态,提出了用于模糊控制的通用输入。 AMD控制系统可能会放大高层非线性建筑的层间漂移,这被称为层间响应放大(IRA)现象。为了避免这个问题,提出了同时使用AMD和层间阻尼器的控制方案来控制高层结构的非线性振动。我们将20层基准非线性结构用于数值研究。数值模拟表明,与单独的AMD或单独的层间阻尼器相比,AMD和层间阻尼器的组合可以消除IRA现象并获得更好的振动抑制,不仅在相对于地面的位移方面,而且在层间响应方面也是如此。版权所有©2010 John Wiley&Sons,Ltd.

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