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The on-orbit antenna pointing calibration of Milstar satellite gimbaled parabolic antennas

机译:Milstar卫星万向节抛物面天线的在轨天线指向校准

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To minimize enemy jamming impacts and to maximize communications coverage of friendly forces, the modern military satellite communications systems require accurate determination of the antenna Earth coverage areas. Also, an accurate antenna pointing system is required to satisfy the link budget requirements on the edge of antenna coverage. The antenna pointing accuracy can be improved considerably by on-orbit calibration of the diurnal satellite antenna pointing misalignment error which arises from the combination of several error sources, such as structural thermal deformations, the attitude determination system, the antenna ground alignment procedure, and the antenna gimbal system. This paper describes how an approximately tenfold reduction in pointing error can be achieved from on-orbit antenna pointing calibration of the gimbaled antenna of the Milstar satellite. In addition, the paper describes the process that was implemented to achieve these results.
机译:为了最小化敌人的干扰影响并最大化友军的通信范围,现代军事卫星通信系统需要准确确定天线的地球覆盖范围。另外,需要一种精确的天线指向系统来满足天线覆盖范围边缘上的链路预算要求。通过对数个误差源(例如结构热变形,姿态确定系统,天线地面对准程序和天线)的组合所引起的昼夜卫星天线指向失准误差进行在轨校准,可以大大提高天线指向的精度。天线万向节系统。本文介绍了如何通过Milstar卫星的万向节天线的在轨天线定点校准,将定点误差降低约十倍。此外,本文还介绍了为实现这些结果而实施的过程。

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