A method of removing interference fringes on spherical subsurface imaging with continuous wave penetrating radar

M. T. Li, C. Huang, Y. Su
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引用次数: 4

Abstract

This paper focuses on the affection of the curved surface media. In order to study it, the continuous wave penetrating radar (CWPR) is applied to detect targets buried in the spherical media. The antennae move in a plane above the spherical surface and execute two dimensions sampling. Different from planar media, this special geometry makes the echoes of the surface interfere, and several circular interference fringes which awfully degrade the imaging quality could be found. In this paper, a novel method is proposed to remove the interference fringes for improving the spherical subsurface imaging. Due to the geometric symmetry, a distribution difference in spatial spectrum domain between the echo of spherical surface and back-scattering field of target beneath the surface can be found out subsequently when a 2D Fourier transformation has been conducted on the data matrix. Therefore, a filter based on this difference is designed to remove the disturbance of interference fringes. Taking advantage of spatial spectrum filtering, CWPR successfully wipes off the fringes caused by spherical surfaces and makes substantial progress in image quality of the subsurface imaging. Moreover, the numerical simulation and experiment results validate the availability of the proposed method.
连续波穿透雷达球面地下成像干涉条纹的去除方法
本文着重讨论了曲面介质的影响。为了对其进行研究,采用连续波穿透雷达(CWPR)对埋在球形介质中的目标进行探测。天线在球面上方的平面上移动并进行二维采样。与平面介质不同的是,这种特殊的几何结构使表面回波产生干涉,形成了一些圆形干涉条纹,严重降低了成像质量。本文提出了一种消除干涉条纹的新方法,以提高球面地下成像的质量。由于几何对称性,对数据矩阵进行二维傅里叶变换后,可以发现球面回波与表面下目标后向散射场在空间谱域上的分布差异。因此,基于这种差异设计了一种滤波器来消除干涉条纹的干扰。利用空间频谱滤波的优势,CWPR成功地消除了球面产生的条纹,使地下成像的图像质量有了实质性的提高。数值模拟和实验结果验证了该方法的有效性。
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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