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首页> 外文期刊>Journal of Applied Geophysics >Balanced horizontal derivative of potential field data to recognize the edges and estimate location parameters of the source
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Balanced horizontal derivative of potential field data to recognize the edges and estimate location parameters of the source

机译:势场数据的平衡水平导数,以识别边缘并估计源的位置参数

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摘要

Edge detection is a common task in the interpretation of potential field data, and many edge detection filters are presented to accomplish this task, which are the functions composed by the first-order horizontal derivative and vertical derivative of potential field data, but we find that the edges recognized by the existing edge detection filters are bigger than the true edges. In this paper, we present the balanced horizontal derivative (BHD) edge detection filter, which uses the ratio of the first-order horizontal derivative to the second-order horizontal derivative to recognize the edges of the source, and the recognized edges by the BHD edge detection filter are more correct and are more insensitive to noise. We derive a linear equation based on the derivatives of the BHD to estimate the depth of the source, and we also present a normalized total horizontal derivative (NTHD) method to image the location of the source. We demonstrate the presented methods on synthetic potential field data, and the results show that the presented methods can provide the edges and location parameters of the sources correctly, and the BHD filter can display the edges more clearly and correctly. At last, we apply the presented methods to real potential field data, and the inversion results computed by the presented methods are in accord with the geology information.
机译:边缘检测是势场数据解释中的常见任务,提出了许多边缘检测滤波器来完成该任务,这些功能是由势场数据的一阶水平导数和垂直导数组成的,但是我们发现现有边缘检测滤镜识别的边缘大于真实边缘。在本文中,我们介绍了平衡水平导数(BHD)边缘检测滤波器,该滤波器使用一阶水平导数与二阶水平导数之比来识别源的边缘,以及通过BHD识别的边缘边缘检测滤波器更正确,对噪声更不敏感。我们基于BHD的导数推导线性方程式,以估计源的深度,并且还提出了一种归一化的总水平导数(NTHD)方法来对源的位置进行成像。我们在合成势场数据上演示了所提出的方法,结果表明所提出的方法可以正确提供源的边缘和位置参数,而BHD滤波器可以更清晰,正确地显示边缘。最后,将提出的方法应用于实际的潜在田间数据,所提出的方法反演结果符合地质信息。

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