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Study on Optimal Broadcast Ephemeris Parameters for GEO/IGSO Navigation Satellites

机译:GEO / IGSO导航卫星最佳广播星历参数研究

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摘要

This paper proposes new sets of suitable broadcast ephemeris parameters for geosynchronous (GEO) and inclined geosynchronous (IGSO) navigation satellites (NSs). Despite the increasing number of GEO and IGSO NSs, global positioning system (GPS)-type ephemeris parameters are still widely used for them. In an effort to provide higher fit accuracy, we analyze a variety of broadcast ephemeris parameters for GEO and IGSO satellites along with their orbital characteristics and propose optimal sets of parameters. Nonsingular elements and orbital plane rotation are adopted for alleviating/avoiding the singularity issues of GEO satellites. On the basis of 16 parameters of GPS LNAV, we add one to four parameters out of 28 correction ones to determine optimal sets of ephemeris parameters providing higher accuracy. All possible parameter sets are tested with the least-square curve fit for four BeiDou GEOs and six BeiDou IGSOs. Their fit accuracies are compared to determine the optimal broadcast ephemeris parameters that provide minimum fit errors. The set of optimal ephemeris parameters depends on the type of orbit. User range error (URE) accuracies of the proposed optimal ephemeris parameters ensure results within 2.4 cm for IGSO and 3.8 cm for GEO NSs. Moreover, the experimental results present common parameter sets for both IGSO and GEO for compatibility and uniformity. Compared with four conventional/well-known sets of ephemeris parameters for BeiDou, our proposed parameters can enhance accuracies of up to 34.5% in terms of URE. We also apply the proposed optimal parameter sets to one GEO and three IGSO satellites of QZSS. The effects of fitting intervals, number of parameters, total bits, and orbit types on the fit accuracy are addressed in detail.
机译:本文提出了地球同步(GEO)新组合适的广播星历表参数的和倾斜的地球同步(IGSO)导航卫星(NSS)。尽管越来越多的GEO和IGSO NS中,全球定位系统(GPS)的型星历参数仍然被广泛用于他们。在努力提供更高的契合准确性,我们分析各种广播星历GEO和IGSO卫星参数与它们的轨道特性一起,并提出参数的最佳组合。非奇异元素和轨道平面旋转采用减轻/避免GEO卫星的奇点问题。对GPS LNAV的16个参数的基础上,添加一个到四个参数在28对修正那些确定的星历参数提供更高的精度的最佳组合。所有可能的参数集合与最小二乘曲线拟合四米北斗的GEO和六个北斗IGSOs测试。他们的配合精度进行比较,以确定最佳的广播星历参数提供最小的配合失误。该组的最佳星历参数取决于轨道的类型。用户距离误差(URE)所提出的最佳的精度最高星历参数确保内2.4厘米为IGSO和3.8厘米GEO奈米球的结果。此外,实验结果呈现共同参数集两者IGSO和GEO的兼容性和均匀性。有四个常规/知名台星历参数北斗相比,我们所提出的参数可以提升高达34.5%的精度在URE方面。我们也建议的最佳参数组适用于一个GEO和QZSS三个IGSO卫星。拟合间隔,参数的数量,总比特,和轨道上的类型的拟合精度的影响进行了详细的讨论。

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