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首页> 外文期刊>Journal of vibration and control: JVC >Damage detection method for composite structures based on a combined technique of cross modal strain energy and niche genetic algorithms
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Damage detection method for composite structures based on a combined technique of cross modal strain energy and niche genetic algorithms

机译:基于交叉模态应变能与小生境遗传算法相结合的复合结构损伤检测方法

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摘要

This paper presents an effective method for structural damage detection using the combined technique of the up-to-date cross modal strain energy (CMSE) and niche genetic algorithms (GAs). The traditional modal strain energy method is not convenient for structural damage detection because it needs to compare the modal information between the same modes of the baseline and damaged structures, and also requires the analytical and measured modes to be consistent in scale, or to be normalized, but no such constraint is required for the CMSE method. However, the current CMSE method is still deficient because it cannot effectively determine the locations of structural damage. In order to overcome the shortcoming of the CMSE method in structural damage detection, a combined method of the CMSE with the niche GAs is proposed in this paper to enhance the capability of identifying structural damage location. Numerical studies of damage detection for the case of a model of an airfoil of composite material are given, and the obtained results show that the method proposed in this paper is successful to detect the damage of complex structures.
机译:本文结合最新的交叉模态应变能(CMSE)和小生境遗传算法(GAs),提出了一种有效的结构损伤检测方法。传统的模态应变能方法不适用于结构损伤检测,因为它需要比较基线和受损结构的相同模态之间的模态信息,并且还要求分析和测量的模态在规模上保持一致或标准化。 ,但CMSE方法不需要此类约束。但是,当前的CMSE方法仍然存在缺陷,因为它不能有效地确定结构损坏的位置。为了克服CMSE方法在结构损伤检测中的不足,提出了一种结合小生境遗传算法的CMSE方法,以提高结构损伤识别的能力。对复合材料翼型模型的损伤检测进行了数值研究,所得结果表明,本文提出的方法能够成功地检测复杂结构的损伤。

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