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Damage detection of truss structures using two-stage optimization based on micro genetic algorithm

机译:基于微观遗传算法的两阶段优化桁架结构损伤检测

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摘要

A simple and efficient two-stage optimization procedure is proposed to properly identify the sites and the extent of multiple damages in truss structures. In the first stage, the most potentially damaged elements are identified using an anti-optimization (AO) technique. In the second stage, a micro genetic algorithm (MGA) is performed to accurately determine the actual damage extents based on a priori knowledge from the first stage. The correctness and effectiveness of the proposed algorithm are proved by two illustrated test examples: the planar and space truss models with the numerically simulated data. The numerical results show the computational advantages of the proposed method to precisely determine the sites and the extent of multiple damages of truss structures.
机译:提出了一种简单有效的两阶段优化程序,以正确识别桁架结构中的位置和多重破坏的程度。在第一阶段,使用反优化(AO)技术确定最可能损坏的元素。在第二阶段,基于第一阶段的先验知识,执行微遗传算法(MGA)以准确确定实际损坏程度。通过两个示例测试示例证明了该算法的正确性和有效性:带有数值模拟数据的平面和空间桁架模型。数值结果表明,该方法具有计算优势,可以精确确定桁架结构的多次破坏的部位和程度。

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