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Study on Benchmark Structure Damage Identification Base on Frequency Response Function and Genetic Algorithm

机译:频率响应函数与遗传算法基准结构损伤识别基础研究

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A combined method for the Benchmark structure damage identification base on the frequency response function(FRF) and genetic algorithm(GA) is presented. The reducing factors of element stiffness are used as the optimization variables, and the cross signature assurance criterion (CSAC) of the test FRF and the analysis FRF is used to constructing the optimization object function and the fitness function of the GA. To avoid the weakness of binary encoding, the floating point number encoding is used in the GA. At last, the Benchmark structure established by IASC-ASCE SHM group is caculated by the proposed method, the results show that even if the serious testing noise is considered, the patterns of damage of the Benchmark structure can be identified well. The effectiveness of the presented method is verified.
机译:介绍了频率响应函数(FRF)和遗传算法(GA)的基准结构损伤识别基础的组合方法。元素刚度的还原因子用作优化变量,并且测试FRF的横象保证标准(CSAC)和分析FRF用于构建GA的优化对象功能和适合度功能。为了避免二进制编码的弱点,浮点数编码用于GA。最后,由IASC-ASCE SHM组建立的基准结构由所提出的方法进行灌木,结果表明,即使考虑了严重的测试噪声,也可以识别基准结构的损坏模式。验证了所提出的方法的有效性。

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