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首页> 外文期刊>Journal of intelligent material systems and structures >A new approach for structural damage detection exploring the singular spectrum analysis
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A new approach for structural damage detection exploring the singular spectrum analysis

机译:探索奇异谱分析的结构损伤检测新方法

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This article presents a novel approach for damage detection applied to structural health monitoring systems exploring the residues obtained from singular spectrum analysis. In this technique, a lead zirconate titanate patch acting as actuator excites the structure, and three other patches are used as sensors to receive the structural responses. This method is based on a high-frequency excitation range in order to overcome the problem caused when the low-vibration modes are excited. In this method, a wideband chirp signal, with low amplitude and variable frequency, is used to excite the structure. The response signals are acquired in the time domain, and the singular spectrum analysis procedure is performed. The residues obtained between the reconstructed and original time series are used to compute statistical metrics. The residues calculated from singular spectrum analysis are used to compute the root mean square deviation and correlation coefficient deviation metric indices, rendering the damage detection approach more reliable. Tests were carried out on an aluminum plate, and the results have demonstrated the effectiveness of the proposed method making it an excellent approach for structural health monitoring applications. The results exploring different numbers of components used during the reconstruction process of time series are obtained, and the highlights are presented.
机译:本文提出了一种用于结构健康监测系统的损伤检测的新方法,该方法探索了从奇异频谱分析获得的残留物。在该技术中,充当致动器的锆酸钛酸铅片激发了结构,而其他三个贴片被用作传感器来接收结构响应。该方法基于高频激励范围,以克服在激励低振动模式时引起的问题。在这种方法中,具有低幅度和可变频率的宽带线性调频信号被用来激励结构。在时域中获取响应信号,并执行奇异频谱分析程序。在重建和原始时间序列之间获得的残差用于计算统计指标。通过奇异频谱分析计算出的残差用于计算均方根偏差和相关系数偏差度量指标,从而使损伤检测方法更加可靠。在铝板上进行了测试,结果证明了该方法的有效性,使其成为用于结构健康监测应用程序的极佳方法。获得了探索时间序列重建过程中使用的不同数量组件的结果,并提出了亮点。

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