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A Robust Method to Detect BeiDou Navigation Satellite System Orbit Maneuvering/Anomalies and Its Applications to Precise Orbit Determination

机译:北斗导航卫星系统轨道操纵/异常的稳健检测方法及其在精密定轨中的应用

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摘要

The failure to detect anomalies and maneuvering of the orbits of navigation satellite sensors will deteriorate the performance of positioning and orbit determination. Motivated by the influence of the frequent maneuvering of BDS GEO and IGSO satellites, this paper analyzes the limitations of existing methods, where BDS orbit maneuvering and anomalies can be detected, and develops a method to solve this problem based on the RMS model of orbit mutual differences proposed in this paper. The performance of this method was assessed by comparison with the health flag of broadcast ephemeris, precise orbit products of GFZ, the O-C values of a GNSS station and a conventional method. The results show that the performance of the method developed in this paper is better than that of the conventional method when the periodicity and trend items are obvious. Meanwhile, three additional verification results show that the method developed in this paper can find error information in the merged broadcast ephemeris provided by iGMAS. Furthermore, from the testing results, it can be seen that the detection of anomaly and maneuvering items do not affect each other based on the robust thresholds constructed in this paper. In addition, the precise orbit of the maneuvering satellites can be determined under the circumstances that the maneuver information detected in this paper is used, and the root mean square (RMS) of orbit overlap comparison for GEO-03/IGSO-03 in Radial, Along, Cross, 1D-RMS are 0.7614/0.4460 m, 1.8901/0.3687 m, 0.3392/0.2069 m, 2.0657/0.6145 m, respectively.
机译:未能检测到异常和导航卫星传感器的轨道操纵将使定位和轨道确定的性能恶化。受BDS GEO和IGSO卫星频繁机动的影响,本文分析了现有方法的局限性,即可以探测BDS轨道机动和异常的方法,并提出了一种基于轨道互斥RMS模型的解决方法。本文提出的差异。通过与广播星历表的健康标记,GFZ的精确轨道积,GNSS站的O-C值和常规方法的比较来评估此方法的性能。结果表明,在周期性和趋势项明显的情况下,本文方法的性能优于常规方法。同时,另外三个验证结果表明,本文开发的方法可以在iGMAS提供的合并广播星历中找到错误信息。此外,从测试结果可以看出,基于本文构建的鲁棒阈值,异常和机动项目的检测不会相互影响。此外,在使用本文中检测到的机动信息以及在Radial上对GEO-03 / IGSO-03的轨道重叠均方根(RMS)进行比较的情况下,可以确定机动卫星的精确轨道。沿着Cross的1D-RMS分别为0.7614 / 0.4460 m,1.8901 / 0.3687 m,0.3392 / 0.2069 m,2.0657 / 0.6145 m。

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