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Multichannel Statistical Broadband Wavelet Deconvolution for Improving Resolution of Seismic Signals

机译:用于提高地震信号分辨率的多通道统计宽带小波折叠

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Many popular deconvolution methods based on Robinson’s convolutional model have played an important role in improving the temporal resolution of seismic data. However, the outcomes of applying these deconvolution methods to real land seismic data are not always desirable due to the effect of noise in the deconvolution process. Although the noise in the seismogram can be minimized during the recording process, the effect of residual noise on deconvolution operators can result in poor deconvolution output. To address the shortcomings of conventional deconvolution methods, we developed a new deconvolution method based on a multichannel statistical principle. In the proposed method, we have extended the surface-consistent convolutional model to include a noise component, thus including the noise effect on deconvolution operators in the deconvolution process. According to the proposed multichannel statistical strategy, we first calculated the autocorrelation of the seismogram, in which the lateral variation effect on the wavelet is considered because of inhomogeneities in the vicinity of sources and receivers. Then, we adopted a local fitting technique to approximate the autocorrelation of the seismic wavelet. To obtain the seismic data with a broad bandwidth and low-noise level, we used the integral-Ricker wavelet as the desired output wavelet. Tests on synthetic data and real land seismic data demonstrate the effectiveness of the proposed method in increasing the resolution of seismic signals.
机译:基于罗宾逊的卷积模型的许多流行的解构方法在提高地震数据的时间分辨率方面发挥了重要作用。然而,由于噪声在解卷积过程中的噪声效果,将这些去卷积方法应用于实际地震数据的结果并不总是希望。虽然在记录过程中可以最小化地震图中的噪声,但是残余噪声对去卷积运营商的影响可能导致差的解卷积输出。为了解决传统的解卷积方法的缺点,我们开发了一种基于多通道统计原理的新型解构方法。在所提出的方法中,我们已经扩展了表面一致的卷积模型以包括噪声分量,从而包括对解构过程中的噪声效果的噪声效应。根据所提出的多通道统计策略,首先计算地震图的自相关,其中由于源和接收器附近的不均匀性,考虑了对小波的横向变化效应。然后,我们采用了局部配件技术来近似地震小波的自相关。为了获得具有广泛带宽和低噪声水平的地震数据,我们将积分式Ricker小波用于所需的输出小波。对合成数据和实际地震数据的测试证明了提出方法在增加地震信号分辨率时的有效性。

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