Direction finding with mutually orthogonal antennas

D. Chick, P. Collins, S. Goodman, R. K. Martin, A. Terzuoli
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Abstract

Electromagnetic direction finding using a set of three mutually orthogonal antennas is studied. The vector effective height concept from antenna theory is employed to develop three direction finding algorithms for use with the proposed antenna arrangement. The first algorithm estimates the direction-of-arrival by computing a vector that is perpendicular to the locus of the instantaneous electric field vector measured at the origin of the coordinate system. The second and third algorithms are based on the well-known maximum likelihood and MUSIC algorithms. For all algorithms we assume a narrowband signal model and that multiple incident waves can be separated in the frequency domain before processing each signal separately. In simulation, each algorithm successfully located the direction-of-arrival to within 2° for circularly polarized waves at SNR ≥ 35dB.
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用相互正交的天线测向
研究了一组相互正交天线的电磁测向。利用天线理论中的矢量有效高度概念,提出了三种测向算法。第一种算法通过计算垂直于坐标系原点处测量的瞬时电场矢量轨迹的矢量来估计到达方向。第二和第三种算法是基于众所周知的极大似然和MUSIC算法。对于所有算法,我们都假设一个窄带信号模型,并且在分别处理每个信号之前,多个入射波可以在频域中分离。在仿真中,对于信噪比≥35dB的圆极化波,各算法均成功将到达方向定位在2°以内。
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