分层(地质)
材料科学
复合材料层合板
稳健性(进化)
小波变换
导波测试
结构健康监测
高斯分布
高斯过程
奇异值分解
复合材料
跟踪(教育)
传感器融合
小波
碳纤维增强聚合物
纤维增强塑料
融合
计算机科学
连续小波变换
复合数
克里金
声学
兰姆波
过程(计算)
灵敏度(控制系统)
图像扭曲
微尺度化学
动态时间归整
作者
Hong Zhang,Xiaofeng Liu,Chang Peng,Daiping Wei
摘要
ABSTRACT Accurate detection and evolution tracking of delamination damage in composite laminates pose significant challenges for structural health monitoring. This study proposes an integrated framework combining a novel damage index (DI) based on two‐dimensional continuous wavelet features of guided wave signals with a multi‐path fusion strategy employing gaussian process regression (GPR) for damage detection and evolution tracking. Initially, the received guided wave is transformed into a time‐frequency representation using the continuous wavelet transform (CWT). Singular value decomposition (SVD) is then applied to extract the principal characteristics from the acquired time‐frequency matrix, followed by the use of dynamic time warping (DTW) distance to characterize the dissimilarity between signals. Subsequently, to mitigate the influence of different path locations and enhance the robustness in damage monitoring, the quantification curves derived from multiple sensing paths are fused with GPR. This process yields damage evolution curves with associated confidence intervals, enabling more accurate and reliable tracking of delamination evolution. The proposed approach is experimentally validated through delamination tests on a carbon fiber reinforced polymer composite plate. Results demonstrate that the proposed index exhibits higher sensitivity to damage detection compared to other DI techniques, and the GPR‐based multipath fusion strategy provides more reliable damage evolution tracking under small‐sample conditions.
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