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Resolving phase wrapping by using sliding transform for generation of dispersion curves

机译:通过使用滑动变换来解决分散曲线的滑动变换来解决阶段包装

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摘要

The complexity involved with the phase unwrapping procedure, while performing the existing spectral analysis of surface waves (SASW) on the basis of two sensors, makes it difficult to automate and requires frequent manual judgment. As a result, this approach generally becomes tedious and may yield erroneous results. The multichannel analysis of surface waves (MASW) technique can resolve the problem of phase wrapping. However, the MASW technique normally requires a large number of closely spaced sensors, typically 24-48 or even more. We have developed a new method that is fast, accurate, and generally resolves the unwrapping of phase with the use of just two sensors, provided the signal-to-noise ratio remains high. In this approach, the unwrapping of the phase can be performed without any manual intervention and an automation of the process becomes feasible. A few examples, involving synthetic test data and surface-wave tests, have been tested to determine the efficacy of our approach. Comparisons of the results have been made with the corresponding solutions using existing SASW and MASW techniques.
机译:涉及相位展开过程的复杂性,同时在两个传感器的基础上执行表面波的现有光谱分析(SASW),使得难以自动化并且需要频繁的手动判断。结果,这种方法通常变得繁琐,并且可能产生错误的结果。表面波(MasW)技术的多通道分析可以解决相位包装的问题。然而,MASW技术通常需要大量紧密间隔的传感器,通常是24-48甚至更多。我们开发了一种快速,准确,并且通常通过仅使用两个传感器来解决阶段的展开的新方法,条件是信噪比保持高。在这种方法中,可以在没有任何手动干预的情况下执行阶段的展开,并且该过程的自动化变得可行。已经测试了一些涉及合成测试数据和表面波测试的示例以确定我们的方法的功效。使用现有SASW和MASW技术的相应解决方案进行了结果的比较。

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