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Experimental Results for the Multipath Performance of Galileo Signals Transmitted by GIOVE-A Satellite

机译:GIOVE-A卫星传输的伽利略信号多径性能的实验结果

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Analysis of GIOVE-A signals is an important part of the in-orbit validation phase of the Galileo program. GIOVE-A transmits the ranging signals using all the code modulations currently foreseen for the future Galileo and provides a foretaste of their performance in real-life applications. Due to the use of advanced code modulations, the ranging signals of Galileo provide significant improvement of the multipath performance as compared to current GPS. In this paper, we summarize the results of about 1.5 years of observations using the data from four antenna sites. The analysis of the elevation dependence of averaged multipath errors and the multipath time series for static data indicate significant suppression of long-range multipath by the best Galileo codes. The E5AltBOC signal is confirmed to be a multipath suppression champion for all the data sets. According to the results of the observations, the Galileo signals can be classified into 3 groups: high-performance (E5AltBOC, L1A, E6A), medium-performance (E6BC, E5a, E5b) and an L1BC signal, which has the lowest performance among Galileo signals, but is still better than GPS-CA. The car tests have demonstrated that for kinematic multipath the intersignaldifferences are a lot less pronounced. The phase multipath performance is also discussed.
机译:GIOVE-A信号的分析是伽利略计划在轨验证阶段的重要组成部分。 GIOVE-A使用当前为将来的伽利略系统预见的所有代码调制来发送测距信号,并在实际应用中预示其性能。由于使用了高级代码调制,与当前的GPS相比,伽利略的测距信号显着改善了多径性能。在本文中,我们使用来自四个天线站点的数据总结了大约1.5年的观测结果。对静态数据的平均多径误差和多径时间序列的仰角依存关系的分析表明,最佳伽利略码对远距离多径具有显着抑制作用。确认E5AltBOC信号是所有数据集的多径抑制冠军。根据观测结果,伽利略信号可分为三类:高性能(E5AltBOC,L1A,E6A),中等性能(E6BC,E5a,E5b)和L1BC信号,其性能最低伽利略发出信号,但仍优于GPS-CA。汽车测试表明,对于运动学多路径,信号间的差异不那么明显。还讨论了相位多径性能。

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