|
|
Study on Time and Frequency Dissemination by GLONASS |
LIANG Kun,ZHANG Ai-min |
National Institute of Metrology, Beijing 100013, China |
|
|
Abstract The development trend of time and frequency dissemination based on GNSS and the status and future improvement of GLONASS were analyzed. GLONASS time and frequency dissemination was studied and its theory, realization principle, error correction and data processing were described. The basic method of GLONASS time and frequency dissemination was realized, the experiments results were compared to those of GPS time and frequency dissemination were implemented, and the performances were analyzed. The conclusion that GLONASS time and frequency dissemination can be comparable with GPS time and frequency dissemination was acquired.
|
|
|
|
|
|
[1]BIPM. Circular T 263[EB/OL]. http://www.bipm.org
[2]曹阳,朱小虎. 多模增强型卫星导航接收机芯片的机遇与挑战[J]. 中国集成电路,2007, (10): 64-66.
[3]Jan Kouba. A guide to using International GNSS Service (IGS) Products[EB]. http://igscb.jpl.nasa.gov/components/usage.html, 2009-05.
[4]李滚. GPS载波相位时间频率传递研究[D].陕西: 中国科学院研究生院(国家授时中心), 2007.
[5]RSA. GLONASS Interface Control Document (ICD) version 5.0[S].2002.
[6]余明,郭际明,过静珺. GPS电离层延迟Klobuchar模型与双频数据解算值的比较与分析[J].测绘通报,2004, (6): 5-8.
[7]Feldmann T, Bauch A, Piester D. Study on the GPS Calibration Accuracy and Code Free Carrier-Phase GPS Time and Frequency Transfer[C]// European Space Agency(ESA). Proc 2nd International Colloquium Scientific and Fundamental Aspects of the Galileo Programme, Padua, 2009.
[8]Allan D W,Thomas C. Technical directives for standardization of GPS time receiver software[J]. Metrologia,1994,31(1):69-79.
[9]凌林本,李滋刚,陈超英,等. 多传感器数据融合时权的最优分配原则[J].中国惯性技术学报,2000, 8(2): 36-39. |
|
|
|