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Optimum design of seismic isolation systems using metaheuristic search methods

机译:基于元启发式搜索方法的隔震系统优化设计

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This study addresses the optimum design of seismic isolated structures via metaheuristic search methods. Three recently developed bio-inspired search methods, namely crow search (CSA), whale optimization (WOA) and grey wolf optimizer (GWO), were employed to develop efficient design optimization algorithms for parameter optimization of seismic isolated structures. The developed design optimization algorithms have been applied to optimize a shear frame model with a base isolation system, where the main objective was to obtain isolation system parameters resulting in minimum roof acceleration without exceeding the isolation system displacement limits. The linear isolator system parameters, namely the damping ratio and isolator period, were optimized based on the time history analyses. The optimization procedure was performed for various isolation displacement limits and damping ratio ranges. The results obtained for this isolated structure by the three design optimization algorithms were compared with previously published results in the literature in order to achieve a verification of the developed algorithms. One of the main outcomes of this study is that the high damping ratio does not always guarantee optimum isolation parameters, while an optimum damping ratio is crucial for achieving the minimum roof acceleration.
机译:本研究通过元启发式搜索方法解决了地震隔离结构的优化设计问题。乌鸦搜索(CSA),鲸鱼优化(WOA)和灰太狼优化器(GWO)等三种最新开发的生物启发性搜索方法被用于开发有效的设计优化算法,用于地震隔离结构的参数优化。已开发的设计优化算法已用于优化具有基础隔震系统的剪力框架模型,其主要目的是获得能够在不超出隔震系统位移极限的情况下实现最小车顶加速度的隔震系统参数。基于时程分析,优化了线性隔振系统的参数,即阻尼比和隔振周期。针对各种隔离位移极限和阻尼比范围执行了优化程序。通过三种设计优化算法对该隔离结构获得的结果与文献中先前发表的结果进行了比较,以验证所开发算法的有效性。这项研究的主要成果之一是,高阻尼比并不总是能够确保最佳的隔离参数,而最佳阻尼比对于实现最小的屋顶加速度至关重要。

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