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Designing a low-cost mobile tracking system for communication with a medium earth orbit satellite

机译:设计一种与中地轨道卫星通信的低成本移动跟踪系统

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An essential part of satellite communication is the orientation of the antenna, which can be difficult to ascertain on mobile platforms such as ships. While equipment to measure orientation accurately at sea exists, current solutions are expensive. This paper describes work toward an antenna orientation system using low-cost Global Position System (GPS) receivers. We investigated two methods: one using the spatial difference between multiple GPS units at the vertices of a polygon, and the other using the differences over time measured using a single GPS unit. We tested the antenna orientation system with the Omnispace F2 satellite at the US Electrodynamics, Inc. (USEI) teleport in Brewster, WA. Although non-correlated systematic errors in the GPS receivers made the multiple-GPS system impractical, the time-differential method was able to maintain a satellite lock for the majority of a simple test course. The reliability of this solution may be further improved using a gain-based correction algorithm.
机译:卫星通信的重要组成部分是天线的方向,这可能难以确定诸如船舶的移动平台上。虽然在海上准确测量方向的设备时,电流的解决方案很昂贵。本文介绍了使用低成本全球位置系统(GPS)接收器的天线方向系统的工作。我们调查了两种方法:一种使用多边形顶点的多个GPS单元之间的空间差异,另一个使用单个GPS单元测量的随时间差异的另一个。我们将天线定向系统与OmniSpace F2卫星在US Electrycyics,Inc。(Usedi)Teleport在Brewster,WA。尽管GPS接收器中的非相关系统误差使得多GPS系统不切实际,但时间差分方法能够为大多数简单测试过程中的卫星锁。使用基于增益的校正算法,可以进一步改善该解决方案的可靠性。

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