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Evaluation and analysis of real-time precise orbits and clocks products from different IGS analysis centers

机译:对来自不同IGS分析中心的实时精确轨道和时钟产品进行评估和分析

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摘要

To meet the increasing demands from the real-time Precise Point Positioning (PPP) users, the real-time satellite orbit and clock products are generated by different International GNSS Service (IGS) real-time analysis centers and can be publicly received through the Internet. Based on different data sources and processing strategies, the real-time products from different analysis centers therefore differ in availability and accuracy. The main objective of this paper is to evaluate availability and accuracy of different real-time products and their effects on real-time PPP. A total of nine commonly used Real-Time Service (RTS) products, namely IGS01, IGS03, CLK01, CLK15, CLK22, CLK52, CLK70, CLK81 and CLK90, will be evaluated in this paper. Because not all RTS products support multi-GNSS, only GPS products are analyzed in this paper. Firstly, the availability of all RTS products is analyzed in two levels. The first level is the epoch availability, indicating whether there is outage for that epoch. The second level is the satellite availability, which defines the available satellite number for each epoch. Then the accuracy of different RTS products is investigated on nominal accuracy and the accuracy degradation over time. Results show that Root-Mean-Square Error (RMSE) of satellite orbit ranges from 3.8 cm to 7.5 cm for different RTS products. While the mean Standard Deviations of Errors (STDE) of satellite clocks range from 1.9 cm to 5.6 cm. The modified Signal In Space Range Error (SISRE) for all products are from 1.3 cm to 5.5 cm for different RTS products. The accuracy degradation of the orbit has the linear trend for all RTS products and the satellite clock degradation depends on the satellite clock types. The Rb clocks on board of GPS IIF satellites have the smallest degradation rate of less than 3 cm over 10 min while the Cs clocks on board of GPS IIF have the largest degradation rate of more than 10 cm over 10 min. Finally, the real-time kinematic PPP is carried out to investigate the effects of different real-time products. The CLK90 has the best performance and mean RMSE of 26 globally distributed IGS stations in three components are 3.2 cm, 6.6 cm and 8.5 cm. And the second-best positioning results are using IGS03 products.
机译:为了满足实时精确点定位(PPP)用户不断增长的需求,实时卫星轨道和时钟产品由不同的国际GNSS服务(IGS)实时分析中心生成,并且可以通过Internet公开接收。因此,基于不同的数据源和处理策略,来自不同分析中心的实时产品的可用性和准确性会有所不同。本文的主要目的是评估不同实时产品的可用性和准确性,以及它们对实时PPP的影响。本文将评估总共九种常用的实时服务(RTS)产品,即IGS01,IGS03,CLK01,CLK15,CLK22,CLK52,CLK70,CLK81和CLK90。由于并非所有RTS产品都支持多GNSS,因此本文仅分析GPS产品。首先,从两个层面分析所有RTS产品的可用性。第一级是时间可用性,指示该时间是否中断。第二层是卫星可用性,它定义每个时期的可用卫星号。然后,研究不同RTS产品的精度,包括标称精度和精度随时间的下降。结果表明,不同RTS产品的卫星轨道均方根误差(RMSE)为3.8 cm至7.5 cm。卫星时钟的平均标准误差(STDE)范围为1.9µcm至5.6µcm。对于所有RTS产品,所有产品的修正的空间信号范围误差(SISRE)从1.3µcm至5.5µcm。对于所有RTS产品,轨道的精度下降都具有线性趋势,而卫星时钟的下降取决于卫星时钟的类型。 GPS IIF卫星的Rb时钟在10分钟内的衰减率最小,小于3µcm,而GPS IIF卫星的Cs时钟在10分钟内的衰减率最大,大于10µcm。最后,通过实时运动学PPP来研究不同实时产品的影响。 CLK90具有最佳性能,在3.2个cm,6.6个cm和8.5个cm的三个分量中,全球26个IGS站点的平均RMSE均值。第二好的定位结果是使用IGS03产品。

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