卫星间频率传输的相对论修正

Bethany Kroese, G. Giorgi, C. Günther
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引用次数: 2

摘要

高度精确的时间和频率同步对导航至关重要。时钟技术的不断改进使系统更加精确。这反过来对协调和传播时间表提出了更严格的要求。本文的动机是对评估GNSS(全球导航卫星系统)星座的未来概念感兴趣。在天基时间和频率传输领域,卫星间链路是GNSS时钟同步的重要内容。除了同步时钟外,这些链路还可以通过精确测距来改善轨道测定。传输通过模拟卫星轨道效应和传播延迟来解决时间和频率信息(即时钟偏移和漂移)。为了充分利用下一代空间时钟的稳定性,必须精确地描述相对论修正,并且必须准确地知道卫星位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relativistic corrections for intersatellite frequency transfer
Highly accurate time and frequency synchronization is crucial for navigation. Constant improvements in clock technology enable more precise systems. This in turn places stricter demands on coordination and dissemination of timescales. This paper is motivated by an interest in evaluating future concepts for GNSS (Global Navigation Satellite System) constellations. Within the field of space-based time and frequency transfer, intersatellite links are of high interest for GNSS clock synchronization. In addition to synchronizing clocks, these links can improve orbit determination through precise ranging. Transmissions resolve time and frequency information (i.e. clock offsets and drifts) by modeling satellite orbit effects and propagation delays. In order to fully capitalize on the stability of next-generation space clocks, relativistic corrections must be described to a high level of precision and satellite positions must be accurately known.
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