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Defect feature extraction of marine protective coatings by terahertz pulsed imaging

机译:太赫兹脉冲成像技术提取海洋保护涂层的缺陷特征

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摘要

Feature extraction of marine protective coatings using Hilbert transform (HT) and wavelet transform modulus maximum (WTMM) on terahertz pulsed imaging (TPI) of the coatings was proposed. For TPI-based marine protective coating detection, it is difficult to locate exactly the reflected echoes form internal structure of coating system by the faint feature in the time domain due to the interference of background noise. However, those faint features were usually caused by the interface between two different medium layers whose refractive indices are very similar or caused by micro defects beneath the coating. The proposed algorithm was validated by simulated and experimental TPI waveform obtained from marine paint samples with or without defects. To extract the structure feature more clearly and intuitively, Hilbert transform procedure was carried out on detected terahertz signal to get Hilbert envelope for further processing. Subsequently, the modulus maximum of the stationary wavelet transform approximation coefficients were employed as the criteria for feature extraction of internal interfaces and defect features, according to the relationship between WTMM and signal singularity. The results demonstrated that the combination of HT and WTMM algorithms could be used to exactly extract the structure feature and to evaluate the position of defects beneath coatings.
机译:提出了利用希尔伯特变换(HT)和小波变换模量最大值(WTMM)对太赫兹脉冲成像(TPI)进行海洋保护涂层特征提取的方法。对于基于TPI的海洋保护涂层检测,由于背景噪声的干扰,很难通过时域中的微弱特征精确定位从涂层系统内部结构反射的回波。然而,那些微弱的特征通常是由折射率不同的两个不同介质层之间的界面引起的,或者是由涂层下面的微缺陷引起的。通过从具有或没有缺陷的船用油漆样品中获得的TPI波形进行仿真和实验,验证了该算法的有效性。为了更清晰,直观地提取结构特征,对检测到的太赫兹信号进行希尔伯特变换,得到希尔伯特包络线进行进一步处理。随后,根据WTMM和信号奇异性之间的关系,将平稳小波变换逼近系数的模量最大值用作内部界面和缺陷特征的特征提取标准。结果表明,HT和WTMM算法的组合可用于精确提取结构特征并评估涂层下方缺陷的位置。

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