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Edge detection in potential fields with the normalized total horizontal derivative

机译:归一化总水平导数在势场中的边缘检测

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Edge detection plays an important role in the interpretation of potential field data. There are many methods based on horizontal and vertical derivatives to delineate the edges of sources. A universal disadvantage of these methods is that they cannot display the large and small amplitude edges simultaneously. In order to solve this problem, a new edge-detection filter is presented (the normalized total horizontal derivative (NTHD) method). The NTHD method is based on the ratio of the horizontal derivative to the maxima of nearby values. The NTHD filter is demonstrated on gravity data and magnetic data from China. The resolving power of the NTHD method is evaluated by comparing the results with those obtained by other similar edge-detection filters based on the horizontal and vertical derivatives. The advantage of the NTHD method in the recognition of source edges is due to the fact that it can make the strong and weak amplitude edges visible simultaneously, and can bring out more details.
机译:边缘检测在潜在场数据的解释中起着重要作用。有很多基于水平和垂直导数的方法来描绘源的边缘。这些方法的普遍缺点是它们不能同时显示大和小幅度边缘。为了解决这个问题,提出了一种新的边缘检测滤波器(归一化总水平导数(NTHD)方法)。 NTHD方法基于水平导数与附近值最大值的比率。 NTHD过滤器在来自中国的重力数据和磁数据上得到了演示。通过将结果与其他类似的基于水平和垂直导数的边缘检测滤波器获得的结果进行比较,可以评估NTHD方法的分辨能力。 NTHD方法在识别源边缘方面的优势是因为它可以使强振幅边缘和弱振幅边缘同时可见,并可以带来更多细节。

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