Influence of a saltwater film on a radio-transparent dome on the amplitude-phase distribution of a millimeter-range antenna

M. Yu. Zvezdina, A. M. Shaposhnikova, Yu. A. Shokova
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Abstract

Transition of communication systems installed on naval ships to the millimeter range requires an analysis of the effect of the saltwater film formed on the radio-transparent dome (RTD) on the radiotechnical characteristics of the mirror antenna. The latter are determined by the amplitude-phase distribution in the antenna aperture, so the topic of research is relevant. The objective of the article is to analyze the effect of the salt-water film on the surface of a marine mounted RTD, as well as the effect of millimeter wavelength antenna placement inside the RTD on the distortion of the field generated in the outer region. It has been shown that when installing millimeter-wave range antennas on a naval ship under a radio-transparent dome it is necessary to consider the distortions introduced by the water film on the dome surface into the generated amplitude-phase distribution when calculating the radio technical characteristics. We do so because most of the known methods for calculating the directivity characteristics of mirror antennas are based on the known amplitude-phase distribution in the antenna aperture. In the paper, the influence of the spherical dome wall and the saltwater film on the amplitude-phase distribution is taken into account as follows. Distortions in the amplitude distribution are caused by energy losses of the electromagnetic wave due to the passage of the curved dielectric wall at different angles. Phase distribution losses are due to the phase shift from the original phase as the dome wall is passed through at different angles. The angles of radio wave entry into the dome wall depend on the location of the antenna inside the radio-transparent dome. The electrical parameters of the saltwater film are determined using the well-known ITU methodology, while its thickness is found using the Gibbs formula, assuming that sea spray is similar to the intensity of drizzle rain. The studies have been conducted for the highest stiffness mode. Studies for a single-mirror antenna with a parabolic reflector 5.4 m in diameter and a radio-transparent dome 18 m in diameter showed that the water film influence is manifested in the phase front distortion, as well as a symmetry violation of the generated amplitude distribution. The degree of water salinity is manifested mainly in the distortion of the phase distribution. This is due to the fact that the electrical parameters of salt and fresh water do not differ much. The detected distortions are stronger for the horizontally polarized waves and in the case when the antenna swing center is offset with respect to the dome symmetry line. The detected patterns allow to give a scientific justification for the choice of the amplitude-phase distribution of the mirror antenna when installing it inside the RTD on the naval ship.
无线电透明圆顶上的盐水膜对毫米范围天线幅相分布的影响
将安装在海军舰艇上的通信系统过渡到毫米范围需要分析在无线电透明圆顶(RTD)上形成的盐水膜对反射天线的无线电技术特性的影响。后者是由天线孔径内的幅相分布决定的,因此本文的研究课题是相关的。本文的目的是分析海洋安装的RTD表面的盐水膜的影响,以及毫米波天线放置在RTD内部对外部区域产生的场畸变的影响。研究表明,在舰船上安装毫米波天线时,在计算无线电技术特性时,必须考虑天线表面水膜对天线产生的幅相分布的畸变。我们这样做是因为大多数已知的计算镜面天线指向性特性的方法都是基于已知的天线孔径中的幅相分布。本文考虑球形圆顶壁和盐水膜对幅相分布的影响如下:振幅分布的畸变是由于电磁波以不同角度通过弯曲介质壁造成的能量损失造成的。相位分布损失是由于圆顶墙以不同角度穿过时,与原始相位相移造成的。无线电波进入圆顶墙的角度取决于天线在无线电透明圆顶内的位置。盐水膜的电参数是用众所周知的ITU方法确定的,而其厚度是用吉布斯公式确定的,假设海浪的强度与细雨的强度相似。对最高刚度模态进行了研究。对直径5.4 m的抛物面反射面和直径18 m的射电透明穹顶的单镜天线的研究表明,水膜的影响表现为相位前畸变,以及产生的振幅分布的对称性破坏。水的盐度程度主要表现在相分布的畸变上。这是由于咸水和淡水的电参数差别不大。在水平极化波和天线摆动中心相对于圆顶对称线偏移的情况下,检测到的畸变更强。检测到的模式允许给出一个科学的理由,选择镜天线的幅相分布时,安装在海军舰艇上的RTD内。
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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