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Dual-Satellite Lunar Global Navigation System Using Multi-Epoch Double-Differenced Pseudorange Observations

机译:双卫星月球全球导航系统,使用多巨头双重差异伪距离观测

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In view of the upcoming missions to obtain resources from the lunar surface, it is essential to have highly-accurate navigation systems to locate surface vehicles in shadowed regions. In response, we propose a dual-satellite lunar navigation system that is based on a multi-epoch double-differenced pseudorange observations (MDPO) algorithm. We used multi-epoch observations in a new way that reduces the number of navigation satellites required. In addition, the double-differenced pseudorange is used in order to eliminate the bias effects of the satellite and user clocks that conventional dual-satellite navigation algorithms did not fully take into account. Furthermore, a pre-known lunar digital elevation model is used to reduce the number of observations. The theoretical behavior of the MDPO algorithm was confirmed by simulation and the results indicate that user position accuracy can be several tens of meters with 95% probability (2drms) within a one-minute observation.
机译:鉴于即将到来的任务从月球表面获得资源,必须具有高度准确的导航系统来定位阴影区域的地面车辆。作为响应,我们提出了一种基于多巨头双差异伪距离观测(MDPO)算法的双卫星月球导航系统。我们以一种新的方式使用多纪元观察,这减少了所需的导航卫星的数量。此外,使用双差异伪距来消除卫星和用户时钟的偏置效果,传统的双卫星导航算法没有完全考虑。此外,使用预先知道的月球数字高度模型来减少观察的数量。通过仿真确认了MDPO算法的理论行为,结果表明,用户位置精度可以在一分钟观察中具有95%概率(2DRMS)的数十米。

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