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Proposal for a Novel Remote Synchronization System for the On-Board Crystal Oscillator of the Quasi-Zenith Satellite System

机译:拟定天顶卫星系统的机载晶体振荡器的新型远程同步系统的建议

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摘要

A remote synchronization system for the on-board crystal oscillator (RESSOX) of the QZSS is proposed. Aimed at offering an alternative architecture for the classic GPS time-keeping system (TKS), the proposed system consists of a synchronization framework where an ultrastable atomic clock, localized at the ground station, is kept synchronized to a second time reference, a voltage-controlled crystal oscillator (VCXO), on-board the QZSS satellite. Based on orbit calculations and delay predictions, feedback and feed-forward control guarantee the correct synchronization of the on-board time reference and the ground-station atomic clock. Compared with the classic GPS TKS, the RESSOX scheme offers several advantages in terms of accuracy, cost, weight, and power consumption. An extensive explanation of this novel design is presented. Differences and advantages of the proposed system are compared with the classic atomic clock scheme.
机译:提出了一种用于QZSS的板载晶体振荡器(RESSOX)的远程同步系统。为了为经典GPS计时系统(TKS)提供替代架构,该提议的系统由一个同步框架组成,在该框架中,位于地面站的超稳定原子钟与第二个时间基准保持同步, QZSS卫星上的可控晶体振荡器(VCXO)。基于轨道计算和时延预测,反馈和前馈控制可确保机载时间参考与地面站原子钟的正确同步。与传统的GPS TKS相比,RESSOX方案在准确性,成本,重量和功耗方面具有多个优势。提出了对该新颖设计的广泛解释。将所提出系统的差异和优点与经典原子钟方案进行了比较。

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