毫米波天线对相位法测向误差的影响研究

И. Д. Павлов, Ivan D. Pavlov
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摘要

介绍。测向误差会降低测向系统的性能。在相位测向器的情况下,除其他因素外,误差的原因与接收信道的非同一性有关。研究天线对测向误差的影响,以及寻找减小测向误差的方法,似乎是提高测向系统质量的相关任务。的目标。研究毫米波天线对相位测向仪误差的影响。材料和方法。对于一组4个毫米波天线,得到了以下特性:空间增益读数、相图读数和复反射系数值。基于得到的多个空间方向的特征,形成特征矩阵。对于每个矩阵,找到L范数。根据得到的L模之间的差异,得出天线特性矩阵之间差异程度的结论。根据特征矩阵之间的相似度,将天线分组成对。一对天线矩阵的L范数与另一对天线矩阵的L范数相比差异不显著。每对天线的方位和测向误差在φ:−15…15°的角度范围内确定,增量为1°。对每对天线的测向误差值进行了比较。结果。得到的两对交替使用的天线的测向误差值在整个考虑的角度范围内是不同的。此外,L模差较小的一对天线具有较低的测向误差水平。在角范围内的大多数点上,两对天线的DF误差差在0.05 ~ 0.1°之间。在角度范围的边界处,测向误差增加,在15 ϕ =的角度处观测到的最大误差为0.5°。结论。安装在同一相位度量基上的天线特性的差异导致测向误差的增加。提出了一种量化天线非同一性的方法。该方法可用于以相位度量为基础对天线进行分组,从而减小了相位法的测向误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research into the Influence of Millimeter-Wave Antennas on Direction Finding Errors by Phase Method
Introduction. Direction finding errors degrade the performance of any direction finding system. In the case of a phase direction finder, the cause of errors, among other things, is related to t he non-identity of the receiving channels. Research into the influence of antennas on direction finding errors, as well as a search for ways to reduce the se errors, appear to be relevant tasks in terms of improving the quality of direction finding systems. Aim. To study the influence of millimeter-wave antennas on the errors of the phase direction finder. Materials and methods. For a series of four millimeter-wave antennas, the following characteristics were obtained: spatial gain readings, phase diagram readings, and complex reflection coefficient values. Based on the characteristics obtained for several spatial directions, matrices of characteristics were formed. For each matrix, the L norm was found. Based on the differences between the obtained L norms, conclusions were drawn about the degree of difference between the antenna characteristic matrices. According to the degree of similarity between the characteristic matrices, the antennas were grouped in pairs. The L norms of the antenna matrices from one pair differed insignificantly compared to the differences between the L norms of the antenna matrices from the second pair. With each pair of antennas, the bearing and direction - finding errors were determined in the range of angles φ: − 15…15° in increments of 1° . The values of direction - finding errors obtained for each pair of antennas were compared with each other. Results. The obtained values of direction - finding errors for two alternately used pairs of antennas differ in the entire cons idered range of angles. Moreover, a pair of antennas with a smaller difference L norm is characterized by a lower level of direction - finding errors. At most points in the angular range, the difference in DF errors for two pairs of antennas falls within the range of 0.05 to 0.1°. At the boundaries of the angular range, the direction -finding errors increase, with the largest difference of 0.5° being observed at an angle of 15 ϕ =  . Conclusion. Differences in the characteristics of antennas installed in the same phase-metric base lead to an increase in direction finding errors. A method for quantifying the non -identity of antennas is proposed. The proposed method can be used to group antennas in phase-metric bases, which will reduce direction -finding errors by the phase method.
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