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Multi-objective optimization by genetic algorithm of structural systems subject to random vibrations

机译:基于遗传算法的结构系统随机振动多目标优化

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This paper deals with a multi-objective optimization criterion for linear viscous-elastic device utilised for decreasing vibrations induced in mechanical and structural systems by random loads. The proposed criterion for the optimum design is the minimization of a vector objective function. The multi-objective optimization is carried out by means of a stochastic approach. The design variables are the device frequency and the damping ratio. As cases of study, two different problems are analysed: the base isolation of a rigid mass and the tuned mass damper positioned on a multi degree of freedom structural system subject to a base acceleration. The non-dominated sorting genetic algorithm in its second version (NSGA-II) is adopted to obtain the Pareto sets and the corresponding optima for different characterizations of the system and input.
机译:本文针对线性粘弹性器件的多目标优化准则,该准则用于减少机械和结构系统中由随机载荷引起的振动。最佳设计的建议标准是向量目标函数的最小化。多目标优化是通过随机方法进行的。设计变量是设备频率和阻尼比。作为研究案例,分析了两个不同的问题:刚体的基础隔离和位于多自由度结构系统上且受到基础加速度的调谐质量阻尼器。采用第二版的非支配排序遗传算法(NSGA-II)来获得Pareto集和针对系统和输入的不同特征的相应最优值。

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