BeiDou wide-area precise timing prototype system

In recent years, the time transfer method based on precise point positioning (PPP) shows a superior performance in terms of accuracy and coverage, which has made it become one of the most popular GNSS time transfer methods. As the timeliness of wide-area differential products improves, real-time PPP...

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Main Authors: SHI Chuang, ZHANG Dong, SONG Wei, YU Jialiang, GUO Wenfei
Format: Article
Language:zho
Published: Surveying and Mapping Press 2020-03-01
Series:Acta Geodaetica et Cartographica Sinica
Subjects:
Online Access:http://html.rhhz.net/CHXB/html/2020-3-269.htm
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spelling doaj-e8e1f722d27544fb84f4641c4b0d9db42020-11-25T03:21:56ZzhoSurveying and Mapping PressActa Geodaetica et Cartographica Sinica1001-15951001-15952020-03-0149326927720200301BeiDou wide-area precise timing prototype systemSHI Chuang0ZHANG Dong1SONG Wei2YU Jialiang3GUO Wenfei4School of Electronic and Information engineering, Beihang University, Beijing 100083, China;School of Electronic and Information engineering, Beihang University, Beijing 100083, China;School of Electronic and Information engineering, Beihang University, Beijing 100083, China;Laboratory of Navigation and Communication Fusion Technology, Ministry of Industry and Information Technology, Beijing 100083, China;GNSS Research Center, Wuhan University, Wuhan 430079, ChinaIn recent years, the time transfer method based on precise point positioning (PPP) shows a superior performance in terms of accuracy and coverage, which has made it become one of the most popular GNSS time transfer methods. As the timeliness of wide-area differential products improves, real-time PPP time transfer has been applied to the study of precise timing. On the basis of PPP time transfer, this paper introduces a wide-area precise timing(WPT) system based on BeiDou satellite navigation system (BDS). We applied real-time PPP time transfer, time-frequency control and hardware delay calibration technology in this system, which could ensure that users can obtain accurate, stable and traceable time in real time.The WPT system consisted of time service platform and terminal. The platform introduced high-accuracy time as the reference time of the system. At the same time, it provided real-time wide-area differential correction data. The terminal obtained the difference between the local clock and the system time based on PPP method. Then steering clock technology was used to realize time synchronization between terminal and system. In order to verify the real-time timing performance of the system, this paper conducted performance testing and evaluation in zero baseline, short baseline and wide-area environments. The experimental results show that the accuracy of time synchronization in the condition of zero baseline and short baseline is better than 0.5 ns. And timing accuracy in a single day is better than 1 ns in a single day, which provide a reference for the development of precision timing technology based on BeiDou system.http://html.rhhz.net/CHXB/html/2020-3-269.htmtime transferwide-area precise timing systemsatellite clock offset estimationclock steeringhardware delay calibration
collection DOAJ
language zho
format Article
sources DOAJ
author SHI Chuang
ZHANG Dong
SONG Wei
YU Jialiang
GUO Wenfei
spellingShingle SHI Chuang
ZHANG Dong
SONG Wei
YU Jialiang
GUO Wenfei
BeiDou wide-area precise timing prototype system
Acta Geodaetica et Cartographica Sinica
time transfer
wide-area precise timing system
satellite clock offset estimation
clock steering
hardware delay calibration
author_facet SHI Chuang
ZHANG Dong
SONG Wei
YU Jialiang
GUO Wenfei
author_sort SHI Chuang
title BeiDou wide-area precise timing prototype system
title_short BeiDou wide-area precise timing prototype system
title_full BeiDou wide-area precise timing prototype system
title_fullStr BeiDou wide-area precise timing prototype system
title_full_unstemmed BeiDou wide-area precise timing prototype system
title_sort beidou wide-area precise timing prototype system
publisher Surveying and Mapping Press
series Acta Geodaetica et Cartographica Sinica
issn 1001-1595
1001-1595
publishDate 2020-03-01
description In recent years, the time transfer method based on precise point positioning (PPP) shows a superior performance in terms of accuracy and coverage, which has made it become one of the most popular GNSS time transfer methods. As the timeliness of wide-area differential products improves, real-time PPP time transfer has been applied to the study of precise timing. On the basis of PPP time transfer, this paper introduces a wide-area precise timing(WPT) system based on BeiDou satellite navigation system (BDS). We applied real-time PPP time transfer, time-frequency control and hardware delay calibration technology in this system, which could ensure that users can obtain accurate, stable and traceable time in real time.The WPT system consisted of time service platform and terminal. The platform introduced high-accuracy time as the reference time of the system. At the same time, it provided real-time wide-area differential correction data. The terminal obtained the difference between the local clock and the system time based on PPP method. Then steering clock technology was used to realize time synchronization between terminal and system. In order to verify the real-time timing performance of the system, this paper conducted performance testing and evaluation in zero baseline, short baseline and wide-area environments. The experimental results show that the accuracy of time synchronization in the condition of zero baseline and short baseline is better than 0.5 ns. And timing accuracy in a single day is better than 1 ns in a single day, which provide a reference for the development of precision timing technology based on BeiDou system.
topic time transfer
wide-area precise timing system
satellite clock offset estimation
clock steering
hardware delay calibration
url http://html.rhhz.net/CHXB/html/2020-3-269.htm
work_keys_str_mv AT shichuang beidouwideareaprecisetimingprototypesystem
AT zhangdong beidouwideareaprecisetimingprototypesystem
AT songwei beidouwideareaprecisetimingprototypesystem
AT yujialiang beidouwideareaprecisetimingprototypesystem
AT guowenfei beidouwideareaprecisetimingprototypesystem
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