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OPTIMAL CONTROL OF ACCELERATIONS IN A BASE-ISOLATED BUILDING USING SEMI-ACTIVE MR DAMPERS

机译:使用半主动MR阻尼器的基础隔离式建筑中的最优控制

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This article presents a theoretical study aimed at improving effectiveness of the isolation system of a building by adding magneto-rheological (MR) dampers that act in parallel to the rubber bearings (RB). To this end, the building itself is modeled with uni-axial elements that consider axial, shear and flexural deformations. Nonlinear elements that include RBs and MR dampers, whose response is velocity dependent, are added at the base of the building. Properties of the MR dampers are obtained from laboratory tests previously performed. Genetic algorithms with local improvement of chromosomes that represent a fuzzy logic control system are used to optimize operation of the MR dampers. Maximum acceleration at the top of the building is taken as the variable to be minimized. Several records of destructive earthquakes that could affect the site are used as input. Structural responses for three different conditions are compared: a) building with the actual isolation system, but without any additional dampers. b) building with rubber isolation and the MR dampers as passive energy dissipaters, and c) building with rubber isolation and MR dampers that are controlled semi -actively. Results show that the average absolute peak acceleration, considering different types of earthquakes, can be reduced by up to 20% in comparison with the case where no dampers are installed.
机译:本文提出了一项理论研究,旨在通过添加与橡胶轴承(RB)平行作用的磁流变(MR)阻尼器来提高建筑物的隔离系统的效率。为此,建筑物本身采用考虑了轴向,剪切和挠曲变形的单轴元素进行建模。在建筑物的底部添加了非线性元素,包括RB和MR阻尼器,其响应取决于速度。 MR阻尼器的特性是从先前执行的实验室测试中获得的。代表模糊逻辑控制系统的具有局部染色体改进的遗传算法用于优化MR阻尼器的操作。建筑物顶部的最大加速度被视为要最小化的变量。可能会影响该地点的一些破坏性地震记录被用作输入。比较了三种不同条件下的结构响应:a)带有实际隔离系统的建筑物,但没有任何附加的阻尼器。 b)以橡胶隔离和MR阻尼器作为被动耗能器的建筑物,以及c)以橡胶隔离和MR阻尼器进行半主动控制的建筑物。结果表明,与未安装阻尼器的情况相比,考虑到不同类型的地震,平均绝对峰值加速度可以降低多达20%。

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