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一种同轨区域集中的北斗卫星自主导航算法
引用本文:林夏,林宝军,刘迎春,白涛,武国强.一种同轨区域集中的北斗卫星自主导航算法[J].宇航学报,2021,42(1):113-121.
作者姓名:林夏  林宝军  刘迎春  白涛  武国强
作者单位:1.上海微小卫星工程中心,上海 201203;2.中国科学院微小卫星创新研究院,上海 201203;3.中国科学院空天信息创新研究院,北京 100094;4.中国科学院大学计算机科学与技术学院,北京 100094;5.上海科技大学信息学院,上海 201210
基金项目:中国科学院国防科技创新重点部署项目(KGFZD 135 18 008)
摘    要:基于北斗三号卫星配置规划,提出了一种同轨区域集中的北斗卫星自主导航算法。利用Ka星间链路指向切换灵活特性与激光链路高速通信特性,并克服激光终端异轨面通信困难,指向切换不便等缺陷,算法设计将轨道面内各卫星采集的Ka双向测距信息利用激光星间链路传入轨道面主卫星中,从而将测距信息集中处理并完成轨道面内各卫星的轨道信息更新。并且,本文还搭建了星内模拟仿真环境,对算法精度及性能进行验证。仿真结果表明,同轨道区域集中自主导航算法可在星内仿真环境中稳定运行,且其导航精度远优于分布式自主导航精度。

关 键 词:  font-size:10.5pt  '>北斗卫星导航系统  星间测距  自主导航  用户等效距离误差(URE)  
收稿时间:2019-11-15

A Coplanar Regional Centralized Autonomous Navigation Algorithm for Beidou Satellites
LIN Xia,LIN Bao jun,LIU Ying chun,BAI Tao,WU Guo qiang.A Coplanar Regional Centralized Autonomous Navigation Algorithm for Beidou Satellites[J].Journal of Astronautics,2021,42(1):113-121.
Authors:LIN Xia  LIN Bao jun  LIU Ying chun  BAI Tao  WU Guo qiang
Institution:1.Shanghai Engineering Center for Microsatellites, Shanghai 201203,China; 2.Innovation Academy for Microsatellites of Chinese Academy of Sciences, Shanghai 201203,China; 3 Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100094, China; 4.School of Computer Science and Technology, University of Chinese Academy of Sciences, Beijing 100094, China; 5.School of Information,Shanghai Tech University,Shanghai 201210, China
Abstract:Based on the configuration plan of BeiDou 3 satellites, a coplanar regional autonomous navigation algorithm for Beidou satellites is proposed. In the algorithm,the two way Ka ranging information collected by the co orbit satellites is designed to transmit to the main satellite by the laser inter satellite links and then with the ranging information, the main satellite can update the coplanar satellites’orbit information centralizedly. The algorithm takes full advantage of the flexible direction switching feature of Ka inter satellite links and the high speed communication feature of laser links and also overcomes the communication difficulties between different planes and direction switching weaknesses of the laser links. In addition, an intra satellite simulation environment is built to verify the accuracy and feasibility of the algorithm. The simulation results show that the regional centralized autonomous navigation algorithm can stably run in the simulation environment, and its navigation accuracy is much better than that of the distributed autonomous navigation.
Keywords:
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