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Modeling wind-gust disturbances for the analysis of antenna pointing accuracy

机译:模拟阵风干扰以分析天线指向精度

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摘要

This paper develops and compares three wind models used to simulate antenna pointing errors. The first model represents wind forces acting on the antenna dish, thus closely representing actual wind action. The second model represents wind gusts as torque disturbances applied at the antenna drives. The third model represents gusts acting at the antenna rate input. A wind filter introduced in this paper, makes the wind gusts of the third model equivalent to the gusts of the second model. The third model is applicable to the currently developed models of the antenna's closed loop systems. Simulink models of the 34-meter and 70-meter antennas' close-loop system were used to simulate antenna pointing errors in wind gusts. The paper shows that for the NASA 34-meter and for the 70-meter antennas, all three models give similar results, and the results are compatible with field measurements of the servo errors taken in wind.
机译:本文开发并比较了三种用于模拟天线指向误差的风模型。第一个模型代表作用在天线碟上的风力,因此紧密代表实际的风力。第二个模型将阵风表示为施加在天线驱动器上的扭矩干扰。第三个模型表示阵风在天线速率输入下的作用。本文介绍的风过滤器使第三种型号的阵风等效于第二种型号的阵风。第三种模型适用于天线闭环系统的当前开发模型。使用34米和70米天线闭环系统的Simulink模型来模拟阵风中的天线指向误差。论文表明,对于34米长的NASA天线和70米长的天线,这三个模型均给出相似的结果,并且该结果与风中伺服误差的现场测量结果兼容。

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