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NSGA-Ⅱ based multi-objective optimization in design of Pall friction dampers

机译:颇尔摩擦阻尼器设计中基于NSGA-Ⅱ的多目标优化

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In the first part of this paper, it is aimed to investigate the optimal slip loads of Pall friction dampers of building frame either the dampers of all stories have the same slip loads or each damper has its own slip load. In both cases the total slip loads are assumed the same. Three objectives are simultaneously satisfied in the optimization procedure based on the fast and elitist non-dominated sorting genetic algorithm (NSGA-II). In the second part of this study, in seeking to achieve a cost effective design, a multi-objective optimization procedure is applied for finding the optimal placement of Pall dampers with assumed properties which satisfies the desired multi-objectives. For numerical studies, a 10-story shear braced frame under an ensemble of 10 earthquake records is used. The seismic responses of the designed controlled frames and uncontrolled frames are compared and the effectiveness of the above optimal designs is evaluated.
机译:在本文的第一部分,旨在研究建筑物框架的颇尔摩擦阻尼器的最佳滑动载荷,或者所有楼层的阻尼器具有相同的滑动载荷,或者每个阻尼器具有自己的滑动载荷。在这两种情况下,假定总滑移载荷相同。基于快速和精英非支配排序遗传算法(NSGA-II)的优化程序可以同时满足三个目标。在本研究的第二部分中,为寻求实现具有成本效益的设计,采用了多目标优化程序来找到具有假定特性的Pall阻尼器的最佳位置,从而满足所需的多目标。为了进行数值研究,使用了10层地震记录下的10层剪力支撑框架。比较了所设计的受控框架和非受控框架的地震响应,并评估了上述最佳设计的有效性。

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