DocumentCode
2594176
Title
Precise two way time synchronization for distributed satellite system
Author
Gun, Li ; Feijiang, Huang
Author_Institution
IAA, Univ. of Electron. Sci. & Technol. of China, Chengdu, China
fYear
2009
fDate
20-24 April 2009
Firstpage
1122
Lastpage
1126
Abstract
The satellite to satellite precise ranging and time synchronization are necessary to distributed satellite system (DSS) and autonomous formation flyer (AFF) application. In satellite formation flying, the range between a cluster of co-orbiting or constellation satellites is very close, they collaborate with each other and perform special scientific missions cooperatively, so they can be regarded as a large single conventional satellite or virtual satellite. To accomplish the special scientific missions, a much higher accuracy requirement is put forward for time synchronization and ranging measurement in the DSS and AFF. Firstly, a detailed description of the principle and key techniques of dual one-way ranging and time synchronization are presented. For further study, the simulation and performance evaluation of the equipment are discussed. Secondly, to adapt the condition of high dynamic in two-way observation module, the digital base-band processing algorithms of spread spectrum pseudo-code is investigated. Meanwhile, the signal generation and fast acquisition of spread spectrum signal are implemented. The methods of designing for code tracking loop, cycle slip detection, ambiguity resolution and carrier loop are also investigated. The results of simulation indicate that the accuracy of the terminal device is less than 0.2 m and 0.5 ns (1 sigma) in precise ranging and time synchronization. The time synchronization error is less than plusmn10 ns for a range less than 200 km in formation flying.
Keywords
satellite navigation; synchronisation; autonomous formation flyer application; code tracking loop; constellation satellites; cycle slip detection; digital base-band processing algorithm; distributed satellite system; performance evaluation; satellite formation flying; signal generation; spread spectrum pseudo-code; spread spectrum signal; time synchronization; virtual satellite; Clocks; Decision support systems; Extraterrestrial measurements; Frequency synchronization; Global Positioning System; Low earth orbit satellites; Satellite broadcasting; Space technology; Spread spectrum communication; Time measurement; Autonomous formation flyer; Distributed satellite system; Time synchronization; Two way time synchronization;
fLanguage
English
Publisher
ieee
Conference_Titel
Frequency Control Symposium, 2009 Joint with the 22nd European Frequency and Time forum. IEEE International
Conference_Location
Besancon
ISSN
1075-6787
Print_ISBN
978-1-4244-3511-1
Electronic_ISBN
1075-6787
Type
conf
DOI
10.1109/FREQ.2009.5168372
Filename
5168372
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