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面向卫星导航对抗的北斗三号地面段防御能力评估方法

Evaluation methods of BDS-3 ground-segment defensive capability oriented to satellite navigation countermeasures.

作者信息

Wang Yue, Sun Fuping, Wang Xian, Gao Shan

机构信息

PLA Strategic Support Force Information Engineering University, Zhengzhou, 450001, China.

China Aero Geophysical Survey and Remote Sensing Centre for Natural Resources, Beijing, 100080, China.

出版信息

Heliyon. 2024 May 7;10(10):e30656. doi: 10.1016/j.heliyon.2024.e30656. eCollection 2024 May 30.

Abstract

Owing to intentional interference and destructions during satellite navigation countermeasures, the security application of global navigation satellite systems (GNSS) faces immense challenges. To ensure the safe application of the GNSS in complex electromagnetic environment, the system-level defensive capability need be assessed, which can make for maintaining GNSS normal service during countering and further realizing the optimal decision. Therefore, this study used the ground control segment in the GNSS as the evaluation object, the bottom indices related to the criterion layers including service performance and station function as the key evaluation indices, and the technical requirement of each index under a secure situation as the standard, to propose the evaluation system including index system and evaluation methods for the ground-segment defensive capability. As BeiDou navigation satellite system III (BDS-3) is a global navigation satellite system independently built and operated by China, it was taken as a case for method verification. Then, BDS-3 two-way observation data between the satellite and the ground and between stations, which was collected from Beijing flight Control Center, from March 5 to 12 (2022) were selected during tests, and the results were compared with the existing standards contained in BDS open service performance standard to evaluate the system-level defensive capability. Evaluation Results of positioning accuracy and error correction ability for the BDS-3's ground stations determined through seven damage experiments with different interference strength show that: Corresponding horizontal and vertical positioning accuracy of stations under test did not exceed 1 m in the statistical period and their convergence time did not exceed the limit (30 min); thus, the ground segment of the BDS-3 has a good defensive capability. Compared to comprehensive evaluation results of the BDS-3, based on the theoretical threshold (the ground-segment threshold ≤48.40 % and the space-segment threshold ≤51.60 %), we know that its ground-segment defense (14.06 %) was worse than GPS ground-segment defense (14.43 %), whereas the ground-segment defense of the BDS/GPS integrated system (15.29 %) was best and its capability evaluation grade was strong. They indicate system's future improvements should focus more on enhancing the development scale and service efficiency of the BDS-3's ground stations in the Western Hemisphere, and reasonably promote system compatibility and interoperability while considering facility cost and operating efficiency.

摘要

由于卫星导航对抗中的蓄意干扰和破坏,全球导航卫星系统(GNSS)的安全应用面临巨大挑战。为确保GNSS在复杂电磁环境中的安全应用,需要评估系统级防御能力,这有助于在对抗期间维持GNSS正常服务,并进一步实现最优决策。因此,本研究以GNSS中的地面控制段为评估对象,将与服务性能和站功能等准则层相关的底层指标作为关键评估指标,并以安全情况下各指标的技术要求为标准,提出了包括指标体系和评估方法的地面段防御能力评估系统。由于北斗三号导航卫星系统(BDS-3)是中国自主建设和运行的全球导航卫星系统,因此将其作为方法验证的案例。然后,在测试期间选取了2022年3月5日至12日从北京飞行控制中心收集的BDS-3卫星与地面以及站间的双向观测数据,并将结果与BDS开放服务性能标准中包含的现有标准进行比较,以评估系统级防御能力。通过七次不同干扰强度的损伤实验确定的BDS-3地面站定位精度和误差校正能力的评估结果表明:在统计期内,被测站相应的水平和垂直定位精度不超过1米,其收敛时间不超过限值(30分钟);因此,BDS-3的地面段具有良好的防御能力。与BDS-3的综合评估结果相比,基于理论阈值(地面段阈值≤48.40%,空间段阈值≤51.60%)可知,其地面段防御能力(14.06%)比GPS地面段防御能力(14.43%)差,而BDS/GPS集成系统的地面段防御能力(15.29%)最佳,其能力评估等级为强。它们表明系统未来的改进应更多地侧重于扩大BDS-3在西半球地面站的发展规模和服务效率,并在考虑设施成本和运营效率的同时合理促进系统兼容性和互操作性。

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