Extraction of pipeline defect feature based on variational mode and optimal singular value decomposition

漏磁 降噪 混叠 奇异值 奇异值分解 频域 声学 信号(编程语言) 材料科学 数学 算法 滤波器(信号处理) 物理 工程类 计算机科学 数学分析 电磁线圈 电气工程 特征向量 量子力学 程序设计语言
作者
Min Zhang,Yanbao Guo,Zheng Zhang,Renbi He,Deguo Wang,Jinzhong Chen,Tie Yin
出处
期刊:Petroleum Science [Elsevier]
卷期号:20 (2): 1200-1216 被引量:10
标识
DOI:10.1016/j.petsci.2022.11.007
摘要

Because the magnetic signal information of pipeline defects obtained by magnetic flux leakage detection contains interference signals, it is difficult to accurately extract the features. Therefore, a novel pipeline defect feature extraction method based on VMD-OSVD (variational modal decomposition - optimal singular value decomposition) is proposed to promote the signal to noise ratio (SNR) and reduce aliasing in the frequency domain. By using the VMD method, the sampled magnetic signal is decomposed, and the optimal variational mode is selected according to the rate of relative change (VMK) of Shannon entropy (SE) to reconstruct the signal. After that, SVD algorithm is used to filter the reconstructed signal again, in which the H-matrix is optimized with the phase-space matrix to enhance SNR and decrease the frequency domain aliasing. The results show that the method has excellent denoising ability for defect magnetic signals, and SNR is increased by 21.01%, 24.04%, 0.96%, 32.14%, and 20.91%, respectively. The improved method has the best denoising effect on transverse mechanical scratches, but a poor denoising effect on spiral welding position. In the frequency domain, the characteristics of different defects are varied, and their corresponding frequency responses are spiral weld corrosion > transverse mechanical cracking > girth weld > deep hole > normal pipe. The high-frequency band is the spiral weld corrosion with f1 = 153.37 Hz. The low-frequency band is normal with f2 = 1 Hz. In general, the VMD-OSVD method is able to improve the SNR of the signal and characterize different pipe defects. And it has a certain guiding significance to the application of pipeline inspection in the field of safety in the future.
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