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Computer-aided design of reflector antennas: the Green Bank Radio Telescope

机译:反射器天线的计算机辅助设计:Green Bank射电望远镜

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This paper presents an evaluation of the electrical performance of the Green Bank Telescope (GBT) reflector antenna, operating as single- and dual-offset configurations, as well as a general overview of the GBT system. The GBT dual-offset Gregorian configuration is designed for low cross polarization (XPOL) using the dual-offset reflector antenna (DORA) synthesis package code developed by the authors. The procedure implemented in DORA to upgrade an existing main reflector to a low cross-polarized dual-offset Gregorian reflector antenna is also described in this paper. All computed patterns were obtained with the parabolic reflector analysis code (PRAC) program, also developed by the authors, and with the commercial code GRASP7. The GBT radiation patterns and performance values, which include original data not available anywhere else as far as the authors know, indicate that low XPOL performance can be achieved with a dual-offset configuration, provided that a low XPOL feed is used. The GBT configuration is employed as a case example for the aforementioned procedure. However, an effort is made to present the main conclusions as generically as possible.
机译:本文介绍了对Green Bank望远镜(GBT)反射天线的电性能的评估,该天线以单偏移和双偏移配置运行,并对GBT系统进行了概述。使用作者开发的双偏移反射器天线(DORA)综合封装代码,GBT双偏移Gregorian配置被设计用于低交叉极化(XPOL)。本文还介绍了在DORA中实施的将现有主反射器升级为低交叉极化双偏移格里高里反射器天线的过程。所有计算出的图案均使用由作者开发的抛物面反射器分析代码(PRAC)程序以及商业代码GRASP7获得。 GBT辐射图和性能值(包括据作者所知在其他任何地方都无法获得的原始数据)表明,如果使用低XPOL馈电,则双偏移配置可以实现低XPOL性能。 GBT配置被用作上述过程的案例。但是,已尽力尽可能概括地提出主要结论。

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