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Improved Multi-GNSS PPP Software for Upgrading the DEMETRA Project Time Monitoring Service

机译:改进的Multi-GNSS PPP软件用于升级DEMETRA项目时间监控服务

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摘要

The H2020 DEMETRA project provides short latency clock monitoring services to the time users using the Atomium precise point positioning (PPP) software developed by the Royal Observatory of Belgium. In this paper, three recent updates of the current Atomium software are introduced: adding Galileo signals in the PPP computation; the option to constrain the receiver clock; PPP with integer ambiguity resolution. The advantages of these updates are demonstrated: Combining the Galileo and global positioning system (GPS) signals for PPP time transfer will further improve the frequency stability inside the computation batch; PPP with receiver clock constraint is not only used to reduce the short-term noise of the clock measurements but can also be used for some specific applications to a keep continuous clock solution in the computation batch or retrieve correct clock measurements from extremely noisy environments; the integer PPP allows a continuous clock solution, and improves the mid-term and long-term stability of the frequency transfer compared to the current PPP frequency transfer techniques.
机译:H2020 DEMETRA项目使用比利时皇家天文台开发的Atomium精确点定位(PPP)软件为时间用户提供短时延时钟监视服务。本文介绍了当前Atomium软件的三个最新更新:在PPP计算中添加Galileo信号;限制接收器时钟的选项;具有整数歧义分辨率的PPP。这些更新的优势得到了证明:将伽利略信号和全球定位系统(GPS)信号相结合进行PPP时间传输将进一步提高计算批次内部的频率稳定性;具有接收器时钟约束的PPP不仅可用于减少时钟测量的短期噪声,而且还可用于某些特定应用,以在计算批次中保持连续的时钟解决方案,或从噪声极大的环境中检索正确的时钟测量;与当前的PPP频率传输技术相比,整数PPP可提供连续的时钟解决方案,并提高了频率传输的中期和长期稳定性。

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