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GPS-Based Navigation And Orbit Determination for the AMSAT AO-40 Satellite

机译:基于GPS的AMSAT AO-40卫星导航和轨道确定

摘要

The AMSAT OSCAR-40 (AO-40) spacecraft occupies a highly elliptical orbit (HEO) to support amateur radio experiments. An interesting aspect of the mission is the attempted use of GPS for navigation and attitude determination in HEO. Previous experiences with GPS tracking in such orbits have demonstrated the ability to acquire GPS signals, but very little data were produced for navigation and orbit determination studies. The AO-40 spacecraft, flying two Trimble Advanced Navigation Sensor (TANS) Vector GPS receivers for signal reception at apogee and at perigee, is the first to demonstrate autonomous tracking of GPS signals from within a HEO with no interaction from ground controllers. Moreover, over 11 weeks of total operations as of June 2002, the receiver has returned a continuous stream of code phase, Doppler, and carrier phase measurements useful for studying GPS signal characteristics and performing post-processed orbit determination studies in HEO. This paper presents the initial efforts to generate AO-40 navigation solutions from pseudorange data reconstructed from the TANS Vector code phase, as well as to generate a precise orbit solution for the AO-40 spacecraft using a batch filter.
机译:AMSAT OSCAR-40(AO-40)航天器占据高度椭圆轨道(HEO),以支持业余无线电实验。该任务的一个有趣方面是尝试将GPS用于HEO中的导航和姿态确定。以前在此类轨道上进行GPS跟踪的经验证明了获取GPS信号的能力,但很少产生用于导航和轨道确定研究的数据。 AO-40航天器飞行了两个Trimble高级导航传感器(TANS)矢量GPS接收器,用于远地点和近地点的信号接收,它是第一个展示自HEO内部自动跟踪GPS信号而没有地面控制器交互作用的雷达。此外,到2002年6月为止,在总共11周的总运行中,接收器返回了连续的码相位,多普勒和载波相位测量流,可用于研究GPS信号特征并在HEO中进行后处理的轨道确定研究。本文介绍了根据从TANS矢量代码阶段重建的伪距数据生成AO-40导航解的初步工作,以及使用批处理滤波器为AO-40航天器生成精确轨道解的初步工作。

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