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Status of Satellite Orbit Determination and Time Synchronization Technology for Global Navigation Satellite Systems

机译:全球导航卫星系统卫星轨道轨道确定和时间同步技术的状态

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摘要

In the form of satellite ephemerides and clock parameters, the space datum and system time information of one global navigation satellite system (GNSS) is transferred to users. With the continuous updating in the satellite payload such as the high-precision atomic clock, the monitoring and tracking technique such as the inter-satellite link, and in the data processing technique, the accuracy and real-time performance of the satellite ephemeris and clock error products are steadily improved. Starting from December 27th, 2018, the BeiDou Navigation System 3, or BDS-3, has provided the accurate and reliable basic positioning, navigation, and timing (PNT) service for the users in the countries within the “one belt and one road”. This paper has summarized the faced challenges of the precise orbit determination and time synchronization from the regional BDS-2 system to the BDS-3 global system, and the specific solutions at the control segment. In addition, this paper has compared the BDS with other GNSS systems in terms of technical characteristics. Finally, aiming at a higher accuracy and more reliable PNT service, the road map of precise orbit determination and time synchronization technique for the next generation navigation systems is discussed, which will provide a reference for developing the global navigation satellite systems with an even higher accuracy.
机译:以卫星单杂样和时钟参数的形式,一个全球导航卫星系统(GNSS)的空间数据和系统时间信息被传送给用户。随着卫星有效载荷的连续更新,如高精度原子时钟,监控和跟踪技术,如卫星间链路等,以及数据处理技术,卫星星历和时钟的准确性和实时性能。错误产品稳步提高。从2018年12月27日开始,Beidou导航系统3或BDS-3为“一带和一条路”中的国家/地区的用户提供了准确可靠的基本定位,导航和时序(PNT)服务。本文总结了从区域BDS-2系统到BDS-3全球系统的精确轨道确定和时间同步的面临的面临挑战,以及控制段的特定解决方案。此外,本文在技术特征方面将BDS与其他GNSS系统进行了比较。最后,讨论了更高的精度和更可靠的PNT服务,讨论了下一代导航系统的精确轨道确定和时间同步技术的路图,这将为开发具有甚至更高的精度开发全球导航卫星系统的参考。

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