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Latest GNSS signal in space developments – GPS, QZSS & the new Beidou 3 under examination

机译:太空发展中的最新GNSS信号-GPS,QZSS和新型北斗3号正在接受审查

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Nowadays one can use four global navigation satellite systems (GNSS). Two of them are complete constellations (GPS, Glonass) and two (Beidou, Galileo) are already usable and will be finish in the near future. Additionally satellite based augmentation systems (SBAS) like WAAS, EGNOS, GAGAN or QZSS complement the GNSS service. However, within all systems one can observe changes, modifications, and updates every year. This can be related to satellite renewables leading to signal property changes. Especially, for safety critical applications using GNSS, like advanced receiver autonomous integrity monitoring (ARAIM) or ground-based augmentation systems (GBAS) the new or changed signal properties are of high interest. With the help of detailed information about the signal deformation and the received signal power it is possible to calculate realistic error bounds and consequently realistic protection level for these kinds of safety critical applications. This paper presents an overview of the findings according new signals or signal configurations of GPS, Beidou and QZSS of the last two years. After a brief introduction of the measurement facility the paper will introduce basic analysis about the quality of the signal shape in spectral and modulation domain. Using our precise calibrated measurement facility, we will also present an analysis of the transmitted satellite signal power including estimates about the power sharing among individual signal components within each band. Considering the measured power in relation to the boresight angle of the satellite one can derive a cut through the antenna pattern of the satellite and can assess the antenna symmetry properties. Examples for different satellites will be presented. Finally, we will end with a conclusion regarding the considered signal developments and its impact on GNSS users.
机译:如今,人们可以使用四个全球导航卫星系统(GNSS)。其中两个是完整的星座(GPS,格洛纳斯),两个(北斗,伽利略)已经可用,并将在不久的将来完成。此外,WAAS,EGNOS,GAGAN或QZSS等基于卫星的增强系统(SBAS)补充了GNSS服务。但是,在所有系统中,人们每年都可以观察到更改,修改和更新。这可能与导致信号特性发生变化的卫星可再生能源有关。特别是对于使用GNSS的安全关键型应用,例如高级接收机自主完整性监控(ARAIM)或基于地面的增强系统(GBAS),新的或更改的信号属性引起了人们的极大兴趣。借助有关信号变形和接收信号功率的详细信息,可以为这类安全关键型应用计算实际的误差范围,从而计算出实际的保护等级。本文根据最近两年的GPS,北斗和QZSS的新信号或信号配置对研究结果进行了概述。在简要介绍了测量设备之后,本文将介绍有关频谱和调制域中信号形状质量的基本分析。使用我们精确的校准测量工具,我们还将提供对发射的卫星信号功率的分析,包括有关每个频带内各个信号分量之间功率共享的估计。考虑到相对于卫星的视轴角的测量功率,可以得出贯穿卫星天线方向图的切线,并且可以评估天线的对称性。将介绍不同卫星的示例。最后,我们将得出关于所考虑的信号发展及其对GNSS用户的影响的结论。

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