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A high-precision time synchronization system and synchronization method based on Beidou clock signal

A technology of time synchronization system and Beidou clock, applied in time-to-digital converters, electrical unknown time interval measurement, devices for measuring time intervals, etc., can solve the problem of reducing the reliability of the Beidou satellite navigation system and the ability of timing and positioning services, which cannot meet the requirements Ultra-short time interval measurement, complex circuit structure and other issues, to achieve the effect of low phase noise, high reliability, and simple circuit structure

Active Publication Date: 2022-05-27
HUNAN NORMAL UNIVERSITY
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Problems solved by technology

The current high-precision time synchronization method is based on the precision time interval measurement technology. The traditional time interval measurement methods include time expansion counting method, time-amplitude conversion method, time cursor method, differential delay line method, etc. These measurement methods have Very high measurement resolution, but the circuit structure is complex and there is a counting error of ±1 word in the time measurement process, which cannot meet the ultra-short time interval measurement between Beidou satellite 1pps signals with a measurement resolution better than 10ps level, which greatly reduces The reliability of the Beidou satellite navigation system, as well as the timing and positioning service capabilities

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  • A high-precision time synchronization system and synchronization method based on Beidou clock signal

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Embodiment Construction

[0025] Below in conjunction with accompanying drawing and embodiment, the present invention is described in detail:

[0026] like figure 1As shown, the high-precision time synchronization system based on Beidou clock signal according to the present invention includes Beidou clock signal generation module, conditioning and shaping module, FPGA programmable counter module, time converter and measurement module, differential delay phase synchronization module, gate The controller is connected to the data processing module, the synchronization result display module and the power supply module; the signal output end of the Beidou clock signal generation module is connected to the signal input end of the conditioning and shaping module, and the signal output end of the conditioning and shaping module is respectively connected to the signal input of the FPGA programmable counter module terminal, signal input terminal of time converter and measurement module, signal input terminal of ...

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Abstract

The invention provides a high-precision time synchronization system and synchronization method based on the Beidou clock signal, including a Beidou clock signal generation module, a conditioning shaping module, an FPGA programmable counter module, a time converter and measurement module, a differential delay phase synchronization module, Gate controller, data processing module, and synchronization result display module; the present invention can greatly improve the time synchronization accuracy between the Beidou satellite and the ground master control station, and the time synchronization accuracy between Beidou satellite 1pps signals at any time is better than 10ps, strengthening It improves the robustness and timing service capability of the Beidou satellite navigation system.

Description

technical field [0001] The invention relates to a time synchronization system and a synchronization method, in particular to a high-precision time synchronization system and synchronization method based on a Beidou clock signal. Background technique [0002] The Beidou satellite navigation system requires high-precision system time. The establishment of the system time not only depends on the precise frequency source but also on the high-precision time synchronization technology. The so-called time synchronization refers to the process in which the time difference between two periodic signals is eliminated or minimized, and the processed time difference will not change over time. The biggest feature of time synchronization is the time difference between the two signals. Has constant invariance. The current high-precision time synchronization method is based on the precise time interval measurement technology. The traditional time interval measurement methods include time ex...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G04R20/02G04F10/00
CPCG04R20/02G04F10/005
Inventor 杜保强余慧敏沈坤王玉明张协衍
Owner HUNAN NORMAL UNIVERSITY
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