Initial Positioning Assessment of BDS New Satellites and New Signals

被引:52
作者
Zhang, Yize [1 ,2 ]
Kubo, Nobuaki [1 ]
Chen, Junping [2 ,3 ]
Wang, Jiexian [4 ]
Wang, Hu [5 ]
机构
[1] Tokyo Univ Marine Sci & Technol, Tokyo 1358533, Japan
[2] Shanghai Key Lab Space Nav & Positioning Tech, Shanghai 200030, Peoples R China
[3] Shanghai Astron Observ, Shanghai 200030, Peoples R China
[4] Tongji Univ, Coll Surveying & Geoinformat, Shanghai 200092, Peoples R China
[5] Chinese Acad Surveying & Mapping, Beijing 100830, Peoples R China
基金
中国国家自然科学基金;
关键词
BeiDou navigation satellite system; signal in space range error; position dilution of precision; single point positioning; real-time kinematic; ORBIT DETERMINATION; NAVIGATION; PERFORMANCE; MODEL;
D O I
10.3390/rs11111320
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
With the official announcement of open service since the end of 2018, the BeiDou navigation satellite system (BDS) has started to provide global positioning, navigation and timing (PNT) services. Thus, it is worth assessing the positioning service of new BDS satellites and signals. In this paper, we comprehensively assess the system status and the global positioning performance of BDS regarding single point positioning (SPP) and real-time kinematic (RTK) performance. Results show that the signal in space range error (SISRE) of BDS-3 satellites is superior to that of BDS-2 satellites, showing an overall accuracy of 0.71 m versus 0.97 m, which is competitive with GPS and Galileo. With the contribution of BDS-3, the number of global average visible satellites has increased from 5.1 to 10.7, which provides a mean global position dilution of precision (PDOP) value better than 6 at 99.88% and the mean availability of basic PNT performance is also improved from 35.25% to 98.84%. One week of statistical results from 54 globally distributed international GNSS service (IGS) stations show that the root mean square (RMS) of SPP accuracy is 1.1 m in horizontal and 2.2 m in vertical, which is at the same level of GPS. The new B1c and B2a signals show a smaller observation noise than B1I, and SPP performance of B1c is similar to that of B1I. However, the positioning precision is slightly worse at the B2a frequency, which may be due to the inaccurate BDS ionosphere correction. As for short baseline RTK, baseline accuracy is also improved due to the increased number of new BDS satellites.
引用
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页数:18
相关论文
共 34 条
[1]  
[Anonymous], RTKLIB VER 2 4 2 MAN
[2]  
[Anonymous], 2016, ACTA GEODAETICAET CA
[3]   Development of an improved empirical model for slant delays in the troposphere (GPT2w) [J].
Boehm, Johannes ;
Moeller, Gregor ;
Schindelegger, Michael ;
Pain, Gregory ;
Weber, Robert .
GPS SOLUTIONS, 2015, 19 (03) :433-441
[4]  
China Satellite Navigation Office, BeiDou Navigation Satellite System Open Service Performance Standard (Version 3.0)
[5]  
China Satellite Navigation Office, DEV BEIDOU NAV SAT S
[6]  
Deng Z., 2019, P CHIN SAT NAV C BEI
[7]   Timing group delay and differential code bias corrections for BeiDou positioning [J].
Guo, Fei ;
Zhang, Xiaohong ;
Wang, Jinling .
JOURNAL OF GEODESY, 2015, 89 (05) :427-445
[8]  
Guo J., MULTIGNSS ANAL WUHAN
[9]   Precise orbit determination for quad-constellation satellites at Wuhan University: strategy, result validation, and comparison [J].
Guo, Jing ;
Xu, Xiaolong ;
Zhao, Qile ;
Liu, Jingnan .
JOURNAL OF GEODESY, 2016, 90 (02) :143-159
[10]   Experimental Study on the Precise Orbit Determination of the BeiDou Navigation Satellite System [J].
He, Lina ;
Ge, Maorong ;
Wang, Jiexian ;
Wickert, Jens ;
Schuh, Harald .
SENSORS, 2013, 13 (03) :2911-2928