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Multiple signal extraction by multiple interference attenuation in the presence of random noise in seismic array data

机译:在地震阵列数据中存在随机噪声的情况下,通过多干扰衰减进行多信号提取

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A vector of digital filters is derived for the multichannel processing of the signals acquired by an array of sensors with the objective of extracting multiple desired signals by the attenuation of multiple interferences and random noise. The signals and interferences are assumed to have arbitrary waveforms with no a priori knowledge of these waveforms. The time duration of the recorded array data is assumed to be long enough to incorporate all time delayed propagated waveforms at the sensors of the array. The derivation is for the general case of an arbitrary array geometric configuration and is not confined to the special case of a linear array of equispaced sensors. The rationale adopted in the derivation of the filters is to give first priority at each discrete frequency to passing the signals, a second priority to canceling the interferences, and a third priority to attenuating the random noise. This rationale well suits the case of seismic data that are dominantly corrupted by strong interferences rather than random noise. Solving a constrained minimization problem derives the vector of array filters. The computation of this vector requires the application of a powerful matrix decomposition technique for the detection of any redundant and/or inconsistent constraints at each discrete frequency. The simulation results demonstrate the extraction ability of the derived filters in both the multiple input single output and the multiple input multiple output processing schemes.
机译:导出数字滤波器的矢量,以对由传感器阵列获取的信号进行多通道处理,目的是通过多重干扰和随机噪声的衰减来提取多个所需信号。假定信号和干扰具有任意波形,而无需事先了解这些波形。假定记录的阵列数据的持续时间足够长,以在阵列的传感器处合并所有时间延迟的传播波形。该推导是针对任意阵列几何结构的一般情况,并不局限于等距传感器线性阵列的特殊情况。滤波器推导中采用的原理是在每个离散频率上将传递信号的优先权给予第一,将干扰消除的优先权给予第二,将随机噪声衰减的第三优先权。这种基本原理非常适合被强烈干扰而不是随机噪声破坏的地震数据。解决约束最小化问题可得出阵列滤波器的向量。该向量的计算需要应用强大的矩阵分解技术来检测每个离散频率上的任何冗余和/或不一致约束。仿真结果证明了在多输入单输出和多输入多输出处理方案中导出滤波器的提取能力。

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