“格洛纳斯- k”航天器时标控制单元现代化

M. N. Utkin, A. Saybel
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引用次数: 0

摘要

导航航天器的原子钟受到突然的小频率跳变的影响。这些跳变会降低用户的定位精度,需要加以考虑。传统的利用地面控制段检测频率跳变的方法不能保证用户对距离误差增加的早期预警。利用星载自主系统对星载同步设备时间尺度进行连续控制,是提高全球卫星导航系统信号完整性的一种有效途径。本文描述了该系统的主要元件——频率比较器的一种新型图。该方案的主要不同之处在于采用了时间-数字转换器来估计时间误差,从而减小了质量、尺寸和功耗。分析了空间飞行器机载设备直接频率比较器实现的特点,描述了实现的面包板模型的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modernization of time scale control unit for «Glonass-K» spacecrafts
Navigation spacecraft’s atomic clocks suffer from sudden small frequency jumps. These jumps lead to a decrease of user’s positioning accuracy and should be considered. Traditional method to detect these frequency jumps with the use of ground control segment does not ensure early user alert of increasing range error. A perspective way to improve global navigation satellite system’s signal integrity is the use of satellite on-board autonomous system for continuous control of board synchronization equipment time scale. This paper describes a novel diagram of frequency comparator – the main element of such system. The main difference of proposed solution is an application of time-to-digital converter for estimation of time error which allows to decrease mass, dimensions and power consumption. The paper deals with the particularities of direct frequency comparator implementation for on-board equipment of space vehicle and describes structure of implemented breadboard model.
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