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Analysis of Galileo IOV plus FOC signals and E5 RTK performance

机译:伽利略IOV Plus Foc信号和E5 RTK性能分析

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摘要

The current Galileo constellation in April 2017 comprises both in-orbit validation and full operational capability satellites transmitting signals on five frequencies, i.e., E1, E5a, E5b, E5, and E6. We analyze the power, multipath and noise of these signals using the data collected by four short baselines of various lengths and receiver/antenna types in Perth, Australia, as well as the Netherlands. In our analysis, the Galileo signals, except E5, show different relative noise and multipath performance for different receiver/antenna types. The E5 signal, with a weak dependency on the type of receiver/antenna, shows a significantly lower level of multipath and noise with respect to the other signals. Estimations of the E5 code standard deviation based on the data of each of the mentioned baselines gives a value of about 6 cm, which is further reduced to about 1 cm once the data are corrected for multipath. Due to the superior stochastic properties of E5 signal compared to the other Galileo signals, we further analyze the short-baseline real-time kinematic performance of the Galileo standalone E5 observations. Our findings confirm that the Galileo E5 data, if corrected for the multipath effect, can make (almost) instantaneous ambiguity resolution feasible already based on the current constellation.
机译:2017年4月的目前的伽利略星座包括轨道验证和全操作能力卫星在五个频率上传输信号,即E1,E5a,E5b,E5和E6。我们使用由珀斯,澳大利亚的各种长度和接收器/天线类型以及荷兰的四种短链条收集的数据分析了这些信号的功率,多路径和噪声。在我们的分析中,除E5之外,伽利略信号显示不同接收器/天线类型的不同相对噪声和多径性能。 E5信号具有弱依赖性依赖于接收器/天线的类型,示出了相对于其他信号的多径和噪声的显着较低。基于每个提到的基线的数据的E5码标准偏差的估计给出了约6cm的值,这一旦数据校正多径一旦数据校正,就进一步减小到约1cm。由于与其他伽利略信号相比,E5信号的卓越随机性能,我们进一步分析了伽利略独立E5观测的短基线实时运动学性能。我们的调查结果证实,如果校正多径效应,伽利略E5数据可以使(几乎)瞬时模糊分辨率可行,已经基于当前星座。

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