形状介质透镜覆盖自适应阵列天线的快速到达方向估计方法

S. Ravishankar, B. Dharshak
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引用次数: 4

摘要

到达方向(DOA)估计算法,特别是多信号分类(MUSIC)和最小方差无失真响应(MVDR)在平面阵列形介质透镜组合中用于定位目标用户。然而,这些算法需要补偿透镜的折射效应,以快速实时地提取真实的到达角。几何光学用于跟踪光线从透镜前的一个孔径,通过透镜的形状边界到各个天线单元,以确定用户信号的DOA。引入了仰角面和方位面信号的角度相关修正,以校正透镜的折射效应,并使用新的映射柱峰搜索技术提取正确的到达角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A rapid direction of arrival estimation procedure for adaptive array antennas covered by a shaped dielectric lens
Direction of Arrival (DOA) estimation algorithms specifically Multiple SIgnal Classification (MUSIC) and Minimum Variance Distortionless Response (MVDR) are used in a planar array - shaped dielectric lens combination to locate a desired user. However, refractive effect of the lens has to be compensated for in these algorithms, rapidly in real time to extract the true arrival angles. Geometrical optics is employed to trace the rays from an aperture in front of the lens, through the shaped lens boundaries to the individual antenna elements to determine the DOA of the user signal. Angle dependent modifications for the DOA of the signal in both elevation and azimuth planes have been introduced to correct for the refractive effects of the lens and extract the correct angle of arrival using a new mapped column peak search technique.
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