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Depth Estimation of Potential Field Sources by Using Improved Chebyshev‐Padé Downward Continuation in Wave Number Domain

机译:通过使用改进的Chebyshev-Padé向下延续在波数域中进行深度估计潜在场源

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Studies of downward continuation mainly focused on improving the stability more than depth calculation. Stable downward continuation is a promising technique for estimating the depth of sources. In this study, based on the filter curve in wave number domain, a new depth estimation method was developed using the Chebyshev‐Padé downward continuation method. First, the filter curves of Tikhonov regularized method and the Chebyshev‐Padé downward continuation method in wave number domain were compared. We concluded the reason that the Tikhonov regularized method can be used to obtain the depth information is that the filter curve converges to zero. Therefore, to use the Chebyshev‐Padé downward continuation method for calculating the depth, a simple low‐pass filter based on upward continuation was used to improve it in the wave number domain, making the filter curve of the new improved method converge to zero. Similar to the Tikhonov regularized method, our new method can obtain the depth information when calculating downward continuation data from the original level to an expected maximum depth level. To verify the effectivity, different synthetic models were used to test our method, indicating that the new method can achieve a more reasonable depth compared to the Tikhonov regularized method. Finally, the new method was applied to real magnetic data collected using unmanned aerial vehicle aeromagnetic surveys to test on a big car in Southeastern Zhejiang, China. The calculated depth matches with its actual depth. These results show that the new method is a useful depth estimation tool for potential field sources.
机译:向下延续的研究主要集中在提高稳定性超过深度计算。稳定向下延是用于估计源的深度有前途的技术。在这项研究中,根据在波数域中的滤波器曲线,一个新的深度估计方法,使用切比雪夫-Padé逼近向下延方法开发的。首先,吉洪诺夫的滤波曲线正规化方法和在波数域中的切比雪夫-Padé逼近向下延方法进行了比较。我们的结论是,Tikhonov正则化正则化方法可以用于获得深度信息的原因在于,滤波器曲线收敛到零。因此,要使用切比雪夫-Padé逼近向下延方法用于计算深度,使用基于向上延续一个简单的低通滤波器,以改善它在波数域,从而使新的改进方法收敛的滤波曲线为零。在吉洪诺夫正规化类似的方法,我们的新方法从原来的水平,期望的最大深度级别计算向下延拓数据时,可以获取深度信息。为了验证有效性,不同的合成模型来测试我们的方法,这表明新的方法可以实现比更合理的深入到吉洪诺夫正规化方法。最后,将新方法适用于使用无人机航磁调查,以测试在浙江东南部,中国大的汽车收集真实磁数据。计算的深度与实际深度相匹配。这些结果表明,新方法对于潜在的场源有用的深度估计工具。

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