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A Hybrid Wavelet Based-Approach and Genetic Algorithm to Detect Damage in Beam-Like Structures without Baseline Data

机译:基于小波的混合遗传算法在无基线数据的类似梁结构损伤检测中的应用

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This paper proposes an optimized damage identification method in beam-like structures using genetic algorithm (GA) without baseline data. For this purpose, a vibration-based damage identification algorithm using a damage indicator called 'Relative Wavelet Packet Entropy' (RWPE) was implemented to determine the location and extent of damage. The procedure does not require vibration signals from an undamaged structure because the method of comparing signals from different locations in the existing state was found to be effective. To ameliorate the algorithm, GA was utilized to identify the best choice for "mother wavelet function" and "decomposition level" of the signals by means of the fundamental fitness function to optimize the algorithm. This resulted in the high accuracy of the damage identification algorithm. In addition, this method has eliminated the difficulties in selecting the type of mother wavelet function for damage identification purposes. To investigate the robustness and accuracy of the proposed method, numerical examples and experimental cases with different damage depths were considered and conducted. The results demonstrated that the proposed method has great potential in the identification of damage location and depth of cut in beam-like structures since it does not require the recorded data from an undamaged beam as a baseline for damage detection. Moreover, the relationship between damage location and depth of damage has been evaluated and results showed that the algorithm can be applied to actual structures.
机译:本文提出了一种使用遗传算法(GA)的无基线数据的梁状结构损伤识别的优化方法。为此,使用了一种称为“相对小波包熵”(RWPE)的损坏指示器进行基于振动的损坏识别算法,以确定损坏的位置和程度。该过程不需要来自未损坏结构的振动信号,因为发现在现有状态下比较来自不同位置的信号的方法是有效的。为了改善该算法,利用遗传算法通过基本适应度函数来确定信号的“母小波函数”和“分解水平”的最佳选择,以优化算法。这导致了损伤识别算法的高精度。另外,该方法消除了为识别损伤而选择母子波函数类型的困难。为了研究该方法的鲁棒性和准确性,考虑并进行了具有不同损伤深度的数值实例和实验案例。结果表明,该方法在识别梁状结构的损伤位置和切口深度方面具有很大的潜力,因为它不需要将未损坏梁的记录数据作为损伤检测的基准。此外,评估了损伤位置与损伤深度之间的关系,结果表明该算法可应用于实际结构。

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