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Effect of coherent noise on single-station direction of arrival estimation

机译:相干噪声对单站到达方向估计的影响

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摘要

Polarization analysis of multi-component seismic data is used in both exploration seismology and earthquake seismology. In single-station polarization processing, it is generally assumed that any noise present in the window of analysis is incoherent, i.e., does not correlate between components. This assumption is often violated in practice because several overlapping seismic events may be present in the data. The additional arrival(s) to that of interest can be viewed as coherent noise. This paper quantifies the error because of coherent noise interference. We first give a general theoretical analysis of the problem. A simple mathematical wavelet is then used to obtain a closed-form solution to the principal direction estimated for a transient incident signal superposed with a time-shifted, unequal amplitude version of itself, arriving at an arbitrary angle to the first wavelet. The effects of relative amplitude, arrival angle, and the time delay of the two wavelets on directional estimates are investigated. Even for small differences in angle of arrival, there may be significant error (>10°) in the azimuth estimate.
机译:在勘探地震学和地震地震学中都使用多分量地震数据的极化分析。在单站极化处理中,通常假定存在于分析窗口中的任何噪声都是不相干的,即,各分量之间不相关。实际上,由于数据中可能存在多个重叠的地震事件,因此通常会违反此假设。感兴趣的附加到达可以看作是相干噪声。本文对由于相干噪声干扰造成的误差进行了量化。我们首先对该问题进行一般的理论分析。然后,使用一个简单的数学小波来获得主方向的闭式解,该主解是为瞬态入射信号估计的,该瞬态入射信号叠加有其时移,不等幅的振幅版本,并与第一个小波成任意角度。研究了两个小波的相对振幅,到达角和时间延迟对方向估计的影响。即使到达角有微小差异,方位角估计中也可能存在明显的误差(> 10°)。

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