Wideband High-Precision Multi-Baseline Two-Dimensional Direction Finding Using Combination Phase Differences

Chang-Ryul Yun, Dae-Gyu Choi, Kyu-Song Lee
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Abstract

In wideband interferometer direction finding, the inherent non-linearity owing to radome, antenna, and signal polarization can cause non-uniform phase propagation along the incident of the signal, leading to distortion of phase difference between receivers. This affects the accuracy of direction finding, particularly in two-dimensional direction finding where azimuth and elevation are mutually influential. In this study, we proposed a two-dimensional direction finding method to divide the detection range into several areas based on azimuth and elevation axes, select the area through a two-dimensional rough direction finding operation, and perform direction finding by correlation operation in the selected area. In addition, combination azimuth and combination elevation phase differences that are robust against phase delay distortion were used in two-dimensional rough direction operations. This method overcame nonlinear phase transfer characteristics and minimized the increase in error as the incidence angle increased. Performance tests confirmed that the proposed algorithm achieved high accuracy two-dimensional direction finding in a wideband (H/I/J band) system with a measurement error of 1 degree or less in the detection range, even in the presence of nonlinear characteristics of radome/antenna.
基于组合相位差的宽带高精度多基线二维测向
在宽带干涉仪测向中,天线罩、天线和信号极化等固有的非线性会导致相位沿信号入射方向传播不均匀,导致接收机之间的相位差失真。这会影响测向的精度,特别是在方位角和高程相互影响的二维测向中。在本研究中,我们提出了一种二维测向方法,基于方位角和高程轴将探测范围划分为若干区域,通过二维粗糙测向操作选择区域,并在所选区域内进行相关操作进行测向。此外,在二维粗糙方向运算中,采用了对相位延迟失真具有鲁棒性的组合方位和组合仰角相位差。该方法克服了非线性相转移特性,减小了随入射角增大而产生的误差。性能测试证实,该算法在宽带(H/I/J波段)系统中实现了高精度二维测向,即使在天线/天线存在非线性特性的情况下,探测范围内的测量误差不超过1度。
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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