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An accelerated differential evolution algorithm with new operators for multi-damage detection in plate-like structures

机译:带有新算子的加速差分演化算法用于板状结构的多损伤检测

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This paper proposes an Accelerated Differential Evolution (ADE) algorithm for damage localization and quantification in plate-like structures. In this study, the inverse damage detection problem is formulated as a nonlinear optimization problem. The objective function is established through the alterations of the structure flexibility matrix weighted with a penalty-function, used specifically to prevent the detection of false alarms. The ADE algorithm is designed via the introduction of three modifications in the standard differential evolution algorithm. Firstly, the initial population is created using knowledge we usually have about the damage scenario of a structure. Such initialization technique assists the algorithm to converge promptly. Secondly, in the mutation phase, a new difference vector, created based on the dispersion of individuals through the search space, is used to ensure the automatic balance between global and local searching abilities. Thirdly, a new exchange operator is designed and used to avoid the untimely convergence to local optima. Finite-element models of isotropic and laminated composite plates are considered as numerical examples to test the efficiency of the proposed approach. Numerical results validate the performance of the ADE method, in terms of both solution accuracy and computational cost and highlight its ability to locate and assess damage, even for large-scale problems and noise-contaminated data.
机译:提出了一种用于板状结构损伤定位和量化的加速差分进化算法。在这项研究中,逆损伤检测问题被表述为非线性优化问题。通过更改带有惩罚函数加权的结构柔韧性矩阵来建立目标函数,该函数专门用于防止错误警报的检测。 ADE算法是通过在标准差分进化算法中引入三个修改而设计的。首先,初始种群是使用我们通常具有的关于结构破坏场景的知识来创建的。这种初始化技术有助于算法迅速收敛。其次,在突变阶段,基于个体在搜索空间中的分散性创建的新差异向量可用于确保全局和局部搜索能力之间的自动平衡。第三,设计并使用了一个新的交换算子,以避免过早收敛到局部最优。各向同性和层压复合板的有限元模型被认为是数值示例,以测试所提出方法的效率。数值结果验证了ADE方法在求解精度和计算成本方面的性能,并突出了其定位和评估损坏的能力,即使对于大规模问题和受噪声污染的数据也是如此。

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