测量航天器天线增益和椭圆系数的方法和手段

V. I. Grits
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引用次数: 0

摘要

天线是航天器的主要部件之一,用于接收和发送信息。航天器生产的一个固有阶段是对整个航天器及其各个部件(包括天线)进行地面实验测试(GET)。在天线通过另一个阶段的测试后,有必要验证其无线电技术特性(RTC)是否符合技术规范(规格)中规定的要求。天线最重要的特性是增益和椭圆系数(EC)。本文旨在介绍测量微波天线增益和椭圆系数的主要方法。文章考虑了三天线法、比较法、平板法等众所周知的增益和椭圆系数测量方法。文章考虑了平面近场扫描仪上的三天线法、使用两条路径的三天线法和使用指示接收器的三天线法。此外,还介绍了准直天线量程比较法的两种变体:使用两根参考天线(其中一根测量信号幅度)和使用双通道功率计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methods and means of measuring the gain and ellipticity coefficient of spacecraft antennas
One of the main components of any spacecraft is antennas, which are used to receive and transmit information. An inherent stage of spacecraft production is ground experimental testing (GET) of both the complete spacecraft and its individual parts, including antennas. After the antenna has passed the another stage of testing, it is necessary to verify that its radio technical characteristics (RTC) comply with the requirements stated in the technical specification (specifications). The most important characteristics of any antenna are its gain and ellipticity coefficient (EC). The purpose of this article is considering the main methods of measuring the gain and EC of microwave antennas. In the article such well- known methods of measuring the gain and ellipticity coefficient as three- antenna method, comparison method, flat screen method are considered. The three- antenna method on a planar near- field scanner, with using two paths, and using an indicator receiver are considered. The method of comparison on a collimator antenna range is described, in two variants: using two reference antennas, with one of which the signal amplitudes are measured, and using a two- channel power meter.
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