Evaluation of Multiple GNSS Navigation Performance in Lunar Transfer Orbit and Circumlunar Orbit

Zijian Lin, Tao Shi, X. Zhuang, Yuxin He
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Abstract

Positioning of high-orbit spacecraft using the Global Navigation Satellite System (GNSS) is an important expansion application of GNSS. With the introduction of GNSS such as Beidou-3 (BDS-3), the number of navigation satellites has increased dramatically, which can significantly increase the GNSS positioning performance of high-orbit spacecraft. In this paper, multi-GNSS positioning performance simulation and evaluation are carried out for high-orbit spacecraft in lunar exploration missions such as Lunar Transfer Orbit (LTO) and circumlunar orbit. The simulation results show that BDS-3 can effectively increase the number of visible satellites during the LTO and circumlunar orbit. With the increase of altitude, the number of visible satellites is greatly reduced due to the limitation of received power, but there are still a few visible satellites in LTO and circumlunar orbit. On the premise of considering the signal range of navigation satellites and removing the receiver power limit, the use of BDS-3 can improve the distribution of Position Dilution of Precision (PDOP) values and positioning errors during the LTO and circumlunar orbit, which provides feasibility for autonomous navigation of high-orbit spacecraft in lunar exploration missions.
月球转移轨道和环月轨道多重GNSS导航性能评价
利用全球导航卫星系统(GNSS)对高轨道航天器进行定位是GNSS的一个重要扩展应用。随着北斗三号(BDS-3)等GNSS系统的引入,导航卫星数量急剧增加,可以显著提高高轨道航天器的GNSS定位性能。本文针对月球转移轨道(LTO)和环月轨道等月球探测任务中的高轨道航天器进行了多gnss定位性能仿真与评估。仿真结果表明,北斗三号系统可以有效地增加LTO轨道和环月轨道的可见卫星数量。随着高度的增加,由于接收功率的限制,可见卫星的数量大大减少,但在LTO和环月轨道上仍有少量可见卫星。在考虑导航卫星信号范围和消除接收机功率限制的前提下,利用北斗三号系统可以改善LTO和环月轨道的位置精度加权(PDOP)值分布和定位误差,为月球探测任务中高轨道航天器自主导航提供可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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