OPTIMUM DESIGN OF TUNED MASS DAMPER PARAMETERS TO REDUCE SEISMIC RESPONSE ON STRUCTURE USING GENETIC ALGORITHM

Q4 Earth and Planetary Sciences
Dedih Suryadi, Argian Prasetya, N. Daratha, Indra Agustian
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Abstract

A tuned mass damper (TMD) is a system to improve structural performance in reducing vibration response under seismic loads. This study optimizes TMD parameters using a genetic algorithm. In this study, the structure is modeled as a spring-mass system to obtain mathematical equations. Then, those equations are used to estimate vibration due to seismic loads. A genetic algorithm is used to find optimum parameters which correspond to minimum vibrations. The simulation result shows that the genetic algorithm can find values of parameters such as the ratio of mass, stiffness, and damping values ​​which reduces vibrations on the structure. Based on the tests, it is found that the best combination of genetic algorithm parameters to produce the most optimal fitness value is population size 30, generation size 800, crossover probability 0.5, and mutation probability 0.5. Applying the genetic algorithm shows that the optimal parameter ratio values of TMD ​​to reduce the vibration response are 10% mass, 10% stiffness, and 1% damping of mass, stiffness, and damping in the structure. The result of the vibration response analysis shows that the maximum amplitude value of the main structure without TMD is 0.24259 m reduced to 0.034385 m with the addition of TMD. This shows that the TMD successfully reduces vibrations in the main structure with a percentage of 85.94%. Where the TMD manages to dissipate the energy that should only be received by the structure to the TMD itself.
基于遗传算法的调谐质量阻尼器参数优化设计
调谐质量阻尼器(TMD)是一种通过降低地震载荷下的振动响应来提高结构性能的系统。本研究使用遗传算法优化TMD参数。在本研究中,将结构建模为弹簧-质量系统,以获得数学方程。然后,使用这些方程来估计由于地震载荷引起的振动。使用遗传算法来寻找与最小振动相对应的最佳参数。仿真结果表明,遗传算法可以找到质量比、刚度和阻尼等参数的值​​这减少了结构上的振动。基于测试,发现产生最优适应度值的遗传算法参数的最佳组合是群体大小30、世代大小800、交叉概率0.5和突变概率0.5。应用遗传算法得到TMD的最优参数比值​​为了降低振动响应,结构中的质量、刚度和阻尼分别为10%、10%和1%。振动响应分析结果表明,在没有TMD的情况下,主体结构的最大振幅值为0.24259m,而在添加TMD后,最大振幅值降至0.034385m。这表明TMD以85.94%的百分比成功地降低了主体结构的振动。其中TMD设法将只能由结构接收的能量耗散到TMD本身。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ASEAN Engineering Journal
ASEAN Engineering Journal Engineering-Engineering (all)
CiteScore
0.60
自引率
0.00%
发文量
75
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