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首页> 外文期刊>Frattura e Integrita Strutturale >Quantitative estimating size of deep defects in multi-layered structures from eddy current NDT signals using improved ant colony algorithm
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Quantitative estimating size of deep defects in multi-layered structures from eddy current NDT signals using improved ant colony algorithm

机译:利用改进的蚁群算法从涡流无损检测信号定量估算多层结构中深层缺陷的大小

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Detection and quantitative estimation of deep defects in multi-layered structures is an essential task in a range of technological applications, such as maintaining the integrity of structures, enhancing the safety of aging aircraft, and assuring the quality of products. A novel approach to accurately quantify the two-dimensional axisymmetric deep defect size from eddy current nondestructive testing (NDT) signals is presented here. The method uses a finite element forward model to simulate the underlying physical process and an improved ant colony algorithm (IACA) to solve the inverse problem. Experiments are carried out. The performance comparison between the IACA method and the least square method is shown. The comparison results demonstrate the feasibility and validity of the IACA method. Between them, the IACA method gives a better estimation performance than the least square method at present.
机译:对多层结构中的深层缺陷进行检测和定量估计是一系列技术应用中的重要任务,例如保持结构的完整性,增强飞机的老化安全性以及确保产品质量。本文提出了一种从涡流无损检测(NDT)信号中准确量化二维轴对称深缺陷尺寸的新颖方法。该方法使用有限元正向模型来模拟基础物理过程,并使用改进的蚁群算法(IACA)解决反问题。进行实验。显示了IACA方法和最小二乘法之间的性能比较。比较结果证明了IACA方法的可行性和有效性。在它们之间,IACA方法提供了比目前最小二乘法更好的估计性能。

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