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Random noise reduction using SVD in the frequency domain

机译:在频域中使用SVD随机降噪

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The frequency spectrum of irregular interference noise has broad bandwidth and poor coherence. But in the same prospecting area, the dominant frequency and bandwidth of effective signals are nearly the same (especially for post-stack section); that is to say, the frequency spectra of effective signals in seismic traces show a high degree of trace-to-trace correlation. Based on this conclusion, we present a novel denoising technique, which works by SVD filtering in the frequency domain. First, the input seismic data are transformed to the frequency domain via the Fourier transform. Then, the frequency spectra are decomposed into eigenimages by means of SVD. We perform the eigenimage filtering of the frequency spectra by selecting singular values to be used in the reconstruction, suppressing the random noise. Compared with the traditional band-pass filtering, the presented method is capable of attenuating the interference noise components within the range of frequency pass band and protects effective signals in high frequency. Tests on both synthetic and field seismic data show that our method can remove random noise and does no damage to effective signal. By comparison with the median filtering and the curvelet domain filtering, we concluded that the presented denoising method performs better in removing background noise and protecting reflection events.
机译:不规则干扰噪声的频谱具有宽的带宽和相干性不良。但在相同的勘探区域,有效信号的主导频率和带宽几乎相同(特别是对于堆叠后部分);也就是说,地震迹线中有效信号的频谱显示出高度的痕量跟踪相关性。基于这一结论,我们提出了一种新颖的去噪技术,其在频域中的SVD滤波工作。首先,通过傅里叶变换将输入地震数据转换为频域。然后,通过SVD将频谱分解成特征范围。通过选择在重建中使用的奇异值来执行频谱的特征图像滤波,抑制随机噪声。与传统的带通滤波相比,所提出的方法能够衰减频率通带范围内的干扰噪声分量,并保护高频的有效信号。对合成和场地震数据的测试表明,我们的方法可以去除随机噪声,并没有损坏有效信号。通过与中值滤波和曲线域滤波的比较,我们得出结论,所提出的去噪方法在去除背景噪声和保护反射事件时更好地执行更好。

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