用MUSIC算法估计定向井眼雷达三维相干源位置

S. Ebihara, M. Sato, H. Niitsuma
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引用次数: 0

摘要

井眼雷达是钻地雷达的一种形式,它在井眼中工作。钻孔雷达的一个重要特点是其对目标的可达性。大多数传统的钻孔雷达都使用偶极天线,这是全向的。然而,在许多工程应用中,需要准确确定裂缝、管道等目标的三维位置。我们设计并构建了一个宽带定向井眼雷达系统原型。接收机是共形阵列天线。该雷达系统在100和300兆赫之间工作。由于阵列的可用空间和频率带宽有限,因此必须采用超分辨率技术。本文提出了一种利用共形阵列进行相干宽带源三维位置估计的方法。该方法基于MUSIC算法,给出了问题的表述和解相关算法。最后给出了实验结果,验证了算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of three-dimensional coherent source positions with a directional borehole radar by MUSIC algorithm
A borehole radar is one form of ground penetrating radars, which operates in a borehole. The significant feature of a borehole radar is its accessibility to targets. Most conventional borehole radar use dipole antennas, which are omnidirectional. However, in many engineering applications, the three-dimensional positions of targets such as fractures and pipes should be accurately determined. We have designed and constructed a prototype broadband directional borehole radar system. The receiver is a conformal array antenna. This radar system operates between 100 and 300 MHz. Since the space available for the array and frequency bandwidth are limited, a super resolution technique should be applied. This paper presents a method for three-dimensional position estimation of coherent broadband sources with the conformal array in a borehole. This method is based on the MUSIC algorithm, and the problem formulation and a decorrelation algorithm are shown. Also, we show experimental results to verify the presented algorithm.
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