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Correction of Ocean-Bottom Seismometer Instrumental Clock Errors Using Ambient Seismic Noise

机译:使用环境地震噪声校正海底地震仪的仪器时钟误差

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摘要

Very accurate timing of seismic recordings is critical for modern processing techniques. Clock synchronization among the instruments constituting an array is, however, difficult without direct communication between them. Synchronization to Global Positioning System (GPS) time is one option for on-land deployments, but not for underwater surveys as electromagnetic signals do not propagate efficiently in water. If clock drift is linear, time corrections for ocean-bottom seismometer (OBS) deployments can be estimated through GPS synchronization before and after the deployment, but this is not sufficient for many applications as the nonlinear component of the drift can reach tens to hundreds of milliseconds for long-duration experiments. We present two techniques to retrieve timing differences between simultaneous recordings at ocean-bottom instruments after deployment has ended. Both techniques are based on the analysis of the cross correlation of ambient seismic noise and are effective even if clock drift is nonlinear. The first, called time symmetry analysis, is easy to apply but requires a proper illumination so that the noise cross-correlation functions are symmetric in time. The second is based on the doublet analysis method and does not have this restriction. Advantages and drawbacks of both approaches are discussed. Application to two OBS data sets shows that both can achieve synchronization of recordings down to about five milliseconds (a few percent of the main period used).
机译:地震记录的非常精确的定时对于现代处理技术至关重要。但是,如果没有仪器之间的直接通信,则构成阵列的仪器之间的时钟同步将很困难。与全球定位系统(GPS)时间同步是在陆地上部署的一种选择,但对于水下勘测则不是这样,因为电磁信号无法在水中有效传播。如果时钟漂移是线性的,则可以在部署前后通过GPS同步来估算海底地震仪(OBS)部署的时间校正,但这对于许多应用来说还不够,因为漂移的非线性分量可能达到数十到数百长时间实验所需的毫秒数。我们提出了两种技术,用于在部署结束后检索海底仪器同时记录之间的时间差异。两种技术都基于对环境地震噪声的互相关性的分析,即使时钟漂移是非线性的,它们也是有效的。第一个称为时间对称性分析,易于应用,但需要适当的照明,以使噪声互相关函数在时间上对称。第二种基于doublet分析方法,没有此限制。讨论了两种方法的优缺点。对两个OBS数据集的应用表明,两者都可以实现大约5毫秒(所用主要周期的百分之几)的同步记录。

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