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Analysis of BDS-3 distributed autonomous navigation based on BeiDou system simulation platform

机译:基于Beidou系统仿真平台的BDS-3分布式自主导航分析

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Satellite autonomous navigation is an important function of the BeiDou-3 navigation System (BDS-3). Satellite autonomous navigation means that the navigation satellite uses long-term forecast ephemeris and Inter-Satellite Link (ISL) measurements to determinate its own spatial position and time reference without the support of the ground Operation and Control System (OCS) for a long time to ensure that the navigation system can normally maintain the time and space reference. This paper aims to analyze the feasibility of distributed autonomous navigation algorithms. For the first time, a ground parallel autonomous navigation test system (GPANTS) is built. The performance of distributed autonomous navigation is then analyzed using the two-way ISL ranging of BDS-3 satellites. First, the BDS simulation platform and the GPANTS are introduced. Then, the basic principles of distributed satellite autonomous orbit determination and time synchronization based on ISL measurements are summarized. Preliminary evaluation of the performance of the BDS-3 constellation autonomous navigation service under ideal conditions through simulation data. Then the performance of autonomous navigation for 22 BeiDou-3 satellites using ISL measurements is evaluated. The results show that when satellites operate autonomously for 50 days without the support of any ground station, the User Range Error (URE) of autonomous orbit determination is better than 3 m, and the time synchronization accuracy is better than 4 ns.
机译:卫星自主导航是北欧-3导航系统(BDS-3)的重要功能。卫星自主导航意味着导航卫星使用长期预测星历和卫星间链路(ISL)测量来确定其自身的空间位置和时间参考,而无需支持地面操作和控制系统(OCS)即可确保导航系统通常可以维护时间和空间参考。本文旨在分析分布式自主导航算法的可行性。首次建立了地面并行自主导航测试系统(GPants)。然后使用BDS-3卫星的双向ISL测距分析分布式自主导航的性能。首先,介绍了BDS仿真平台和GPANTS。然后,总结了基于ISL测量的分布式卫星自主轨道确定和时间同步的基本原理。通过仿真数据在理想条件下BDS-3星座自主导航服务性能的初步评价。然后,评估了使用ISL测量的22个北欧-3卫星的自主导航的性能。结果表明,当卫星在没有任何地面站的支持下自主运行50天时,自主轨道确定的用户范围错误(URE)优于3米,并且时间同步精度优于4 ns。

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