Real-Time Estimation of BDS-3 Satellite Clock Offset with Ambiguity Resolution Using B1C/B2a Signals

Author:

Xie Wei12ORCID,Wang Kan123ORCID,Fu Wenju4,Xie Shichao5,Cui Bobin5ORCID,Li Mengyuan5

Affiliation:

1. National Time Service Center, Chinese Academy of Sciences, Xi’an 710600, China

2. Key Laboratory of Time Reference and Applications, Chinese Academy of Sciences, Xi’an 710600, China

3. University of Chinese Academy of Sciences, Beijing 100049, China

4. State Key Laboratory of Information Engineering in Surveying, Mapping and Remote Sensing, Wuhan University, Wuhan 430079, China

5. College of Geology Engineering and Geomatics, Chang’an University, Xi’an 710054, China

Abstract

The third generation of the BeiDou navigation satellite system (BDS-3) can transmit five-frequency signals. The real-time satellite clock offset of BDS-3 is typically generated utilizing the B1I/B3I combination with the ambiguity-float solutions. By conducting the ambiguity resolution (AR), the reliability of the satellite clock offset can be improved. However, the performance of BDS-3 ambiguity-fixed real-time satellite clock offset with B1C/B2a signals remains unknown and unrevealed. In this contribution, the performance of the BDS-3 ambiguity-fixed satellite clock offset with the new B1C/B2a signals is investigated. One week of observation data from 85 stations was used to perform ambiguity-fixed satellite clock offset estimation. For B1I/B3I and B1C/B2a signals, the wide-lane (WL) uncalibrated phase delay (UPD) on the satellite end is fairly stable for one day, while the narrow-lane (NL) UPD standard deviation (STD) amounts to 0.122 and 0.081 cycles, respectively. The mean ambiguity fixing rate is 80.7% and 78.0% for these two signal combinations, and the time to first fix (TTFF) for the B1C/B2a signals is remarkably shorter than that of the B1I/B3I signals. The STDs of the ambiguity-float and -fixed satellite clock offsets are 0.033 and 0.026 ns, respectively, for the B1I/B3I combination, and it is reduced to 0.024 and 0.023 ns for B1C/B2a signals, respectively. Using the estimated UPD and clock offset products, the positioning performance of the kinematic Precise Point Positioning (PPP)-AR results amounts to 1.56, 1.23, and 4.46 cm in the east, north, and up directions for B1I/B3I signals, respectively. It is improved to 1.36, 1.16, and 4.25 cm using the products estimated with the B1C/B2a signals, with improvements of 12.8%, 5.7%, and 4.7% in three directions, respectively. The experiments showed that the performances of the ambiguity-fixed satellite clock offsets and the PPP-AR results using B1C/B2a signals are better than those of B1I/B3I.

Funder

National Time Service Center

National Natural Science Foundation of China

CAS

International Partnership Program of the Chinese Academy of Sciences

Australian Research Council—Discovery Project

Publisher

MDPI AG

Reference38 articles.

1. Introduction to BeiDou-3 navigation satellite system;Yang;Navigation,2019

2. Huang, G., Cui, B., Zhang, Q., Fu, W., and Li, P. (2018). An improved predicted model for BDS ultra-rapid satellite clock offsets. Remote Sens., 10.

3. A quality control method based on improved IQR for estimating multi-GNSS real-time satellite clock offset;Xie;Measurement,2022

4. CSNO (2019). BeiDou Navigation Satellite System Signal in Space Interface Control Document Open Service Signal B1I (Version 3.0), China Satellite Navigation Office.

5. CSNO (2018). BeiDou Navigation Satellite System Signal in Space Interface Control Document Open Service Signal B3I (Version 1.0), China Satellite Navigation Office.

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