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首页> 外文期刊>Journal of environmental & engineering geophysics >OMWS Method for Weak Signal Processing of GPR and Its Application in the Identification of Concrete Microcracks
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OMWS Method for Weak Signal Processing of GPR and Its Application in the Identification of Concrete Microcracks

机译:鄂木斯核磁共振弱信号处理方法及其在混凝土微裂纹识别中的应用

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摘要

To reduce the impact of attenuation and dispersion in ground penetrating radar (GPR) detection and to effectively improve GPR profile recording and to identify a weak detection target, a high-resolution processing method based on orthogonal matching pursuit and wavelet spectrum whitening (the OMWS method) is presented. First, according to the matching pursuit algorithm and the strong reflection-forming mechanism and based on sparse representation theory, a sparse dictionary suitable for the characteristics of a strong reflection signal was selected, and the signal was decomposed, which displayed the weak target signal well. Second, wavelet analysis was used to decompose the processed GPR signal into time-domain subsignals in different frequency bands, and each subsignal was whitened by a whitening filter. Then, the processed subsignals were reconstructed. The final results were compared with the results of conventional spectrum whitening method and showed that the OMWS method can accurately weaken the effect of the strong impedance interface and effectively enhance the local information of microcrack-reflected signals in both the time and frequency domains. The resolution of the processed GPR image is greatly improved, and the reflected signal of the hidden microcrack is easily visible. The method is clearer and more intuitive in the expression of the weak signals of hidden microcrack than the conventional spectrum whitening method, and the compensation for the high-frequency of the signals is more obvious.
机译:为了降低地面穿透雷达(GPR)检测中的衰减和色散的影响,并有效地改善GPR型材记录并识别基于正交匹配追踪和小波谱展示的高分辨率处理方法(OMWS方法) ) 被表达。首先,根据匹配的追踪算法和强反射形成机制并基于稀疏表示理论,选择适合于强反射信号特性的稀疏字典,并且信号进行了分解,井下显示弱目标信号。其次,小波分析用于将处理后的GPR信号分解为不同频带中的时域份子环,并且每个子系列由美白滤波器变白。然后,重建了处理的本人。将最终结果与常规光谱增白方法的结果进行比较,并显示OMWS方法可以准确地削弱强阻抗接口的效果,并有效地增强了时间和频率域中的微裂纹反射信号的局部信息。处理后GPR图像的分辨率大大提高,并且隐藏微裂纹的反射信号很容易可见。该方法更清晰,更直观地表达隐藏的微裂纹的弱信号而不是传统的光谱白化方法,并且对信号的高频的补偿更明显。

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