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An Improved Time Synchronous System Based on GPS Disciplined Rubidium

机译:基于GPS约束id的改进时间同步系统。

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In this paper, an improved time synchronous system based on Global Positioning System (GPS) disciplined Rubidium frequency standard is introduced. By comparing with the Cesium frequency standard's output, the difference between the two signals has been measured, the character of the GPS timing signal is analyzed, it is proved that the GPS timing signal has a zero mean value over the long haul and the accuracy may be enhanced by making many measurements and averaging them. A scheme of GPS disciplined Rubidium based on Time to Digital Converter(TDC), numeric data filtering, embedded computer and precisely Digital to Analogy Converter is designed, the accuracy of the GPS disciplined Rubidium frequency standard is about 3×10-12. Based on the same, a novel method of time Synchronous using GPS timing signal is invented. Not as the normal method-directly using any one of the GPS timing signal to synchronous, the improved time synchronous system's output is synchronous to the GPS timing signal's mean, though it has a lower noisy level and a good accuracy. The precisely time synchronous circuit based on an embedded computer, Complicated Programmable Logical Device(CPLD), Time to Digital Converter(TDC) is described, and the test result results are presented too.
机译:本文介绍了一种基于全球定位系统(GPS)规范的frequency频率标准的改进的时间同步系统。通过与铯频率标准的输出进行比较,测量了这两个信号之间的差异,分析了GPS定时信号的特性,证明了GPS定时信号在长途中的平均值为零,并且精度可能很高。通过进行多次测量并取平均值来增强测量效果。设计了一种基于时间数字转换器(TDC),数字数据过滤,嵌入式计算机和精确的数模转换器的GPS规范Rub方案,GPS规范frequency频率标准的精度约为3×10-12。在此基础上,发明了一种利用GPS定时信号进行时间同步的新方法。改进后的时间同步系统的输出具有较低的噪声水平和较高的准确性,但它不是直接使用GPS定时信号中的任何一种进行同步的常规方法,而是与GPS定时信号的平均值同步的。描述了基于嵌入式计算机的精确时间同步电路,复杂可编程逻辑器件(CPLD),时间数字转换器(TDC),并给出了测试结果。

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