Fourier filtering of continuous global surfaces

S. Billings, G. Newsam
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引用次数: 3

Abstract

Sharpening and edge-enhancement filters are often applied to geophysical data that were collected with an uneven sample spacing and varying sample density. In this paper we propose an alternative methodology to the usual gridding/digital filtering processing pathway. We first fit a continuous global surface (CGS) to the data and then implicitly apply Fourier domain filtering to the entire surface. The CGS is constructed to optimize some property of the surface (e.g. smoothness). We find that the best approach is to optimize the properties of the filtered surface rather than the surface that fits the data. Otherwise certain filters cause the transformed surface to have singularities at the data points. We demonstrate the viability of the methodology in the computation of the second vertical derivative of a gravity survey.
连续全局曲面的傅里叶滤波
锐化和边缘增强滤波器通常应用于样本间距不均匀和样本密度变化的地球物理数据。在本文中,我们提出了一种替代通常的网格/数字滤波处理途径的方法。我们首先拟合数据的连续全局曲面(CGS),然后隐式地对整个曲面应用傅里叶域滤波。构造CGS是为了优化表面的某些特性(如光滑度)。我们发现,最好的方法是优化过滤表面的性质,而不是优化拟合数据的表面。否则,某些过滤器会使转换后的曲面在数据点处具有奇异性。我们证明了该方法在计算重力测量的第二次垂直导数中的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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