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Extracting unmodeled systematic errors from BDS orbit determination residuals and application in SPP/PPP

机译:在SPP / PPP中提取来自BDS轨道轨道测定残差和应用的未暗模系统误差

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摘要

Abstract To analyze the unmodeled systematic errors in BDS, a filter‐assisted Partly Ensemble Empirical Mode Decomposition (PEEMD) method is combined with Hilbert spectrum analysis to extract the feature information from BDS preprocessed orbit determination residuals (PODR). The results show that the feature extraction method can effectively extract a period of about 1 day for GEO/IGSO satellites and a period of about 13 h for MEO satellites. The results of the chi‐square test show that the remaining PODR follow a normal distribution. Statistical results from the 3‐day experiment indicate that the application of the extracted feature information for BeiDou‐only SPP improves positioning accuracy by 20%, 19%, and 23% in the east, north, and upward directions, respectively. BeiDou‐only PPP experiments show that the application of the extracted feature information reduces the static PPP convergence time by 34%, 10%, and 21% and the kinematic PPP convergence time by 25%, 11%, and 9% in three coordinate components, respectively.
机译:摘要为了分析BDS中未拼接的系统误差,将滤波器辅助部分集合经验模式分解(PEEMD)方法与HILBERT频谱分析相结合,以从BDS预处理的轨道确定残差(PODR)中提取特征信息。结果表明,特征提取方法可以有效提取Geo / Igso卫星的约1天的时间,以及Meo卫星的约13小时。 Chi-Square测试的结果表明,剩余的PODR遵循正态分布。为期3天实验的统计结果表明,仅将北欧的SPP提取的特征信息的应用分别将定位精度提高了20%,19%和23%的东部,北方和向上方向。只有PPP实验表明,提取的特征信息的应用将静态PPP收敛时间降低了34%,10%和21%,在三个坐标组件中将运动PPP收敛时间和运动PPP收敛时间达到25%,11%和9% , 分别。

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