高精度多功能GPS/BD接收机授时系统的研制

Li Gun, Wu Fu-ping, Wei Jing-fa, Huang Xian-he
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引用次数: 3

摘要

本文介绍了一种采用自主研制的GPS/BD时间接收机的高精度多功能授时系统。首先设计了一种用于局域网络时频同步的GPS/BD(中国北斗导航系统)时间接收机,详细描述了接收机实现的主要问题和解决方案,然后重点讨论了性能考虑。接收机是实现定时系统的主要部分。定时系统可提供精确的时间码和频率信号,包括5mhz和10mhz标准频率信号、1pps和串行时间码数据等。各分站采用共视比对技术,消除了源间的共同误差,观测数据可通过无线或互联网在各站间传输。为了使主站和从站之间的时间同步精度根据观测结果保持在10ns以内,采用了充分发挥其性能的移相控制和分频控制。使用定时系统,时间比较以短基线的7.4 ns和超短基线的6.6 ns的精度进行。行时钟实验结果表明,同步精度为2.7 ns。频率稳定度为1秒,1.3 E-12。该定时系统可为雷达跟踪、通信系统、电网、智能交通系统等提供高时频信号。
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Development of high precision and multifunctional timing system using integrated GPS/BD receiver
A highly precise and multifunctional timing system using the self development integrated GPS/BD time receiver is presented in this paper. The authors firstly designed an integrated GPS/BD (compass or Beidou navigation system of China) time receiver for time and frequency synchronization in a local network, and describing the main issues and the solution of the receiver implement in detail, and then focused on performance considerations. The receiver has been used as the major part to implement the timing system. The timing system can offer precise time code and frequency signal including standard frequency signal 5 MHz and 10 MHz, 1 pps and the serial time code data et al. The common view comparison technique is used in each sub-system for eliminating the common error of sources, and the observation data can be transferred between each station by wireless or internet. To keep the time synchronous precision within 10 ns between the master station and any slave station according to the observation results, phase shifting control and frequency division have been used which exploit their full level of performance. With the timing system, time comparisons are performed with a precision of 7.4 ns for a short baselines and 6.6 ns for a super short baseline. The result of traveling clock experiment indicates that the synchronous precision was 2.7 ns. The frequency stability of one second, 1.3 E-12 was achieved. The timing system can be used to supply high time and frequency signal for radar tracking, communication system, power grid and intelligent transportation system etc.
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