time and frequency standard
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2020 ◽  
Vol 20 (5) ◽  
pp. 072
Author(s):  
Kai Zhu ◽  
Jin Fan ◽  
Kun Liang ◽  
Wei Tang ◽  
Zhi-Sheng Gao ◽  
...  


2018 ◽  
Vol 48 (10) ◽  
pp. 967-972
Author(s):  
K Yu Pavlenko ◽  
Yu K Pavlenko ◽  
A A Belyaev ◽  
I Yu Blinov ◽  
M N Khromov ◽  
...  


2017 ◽  
Vol 21 (8) ◽  
pp. 73-80
Author(s):  
Yuri Khrustalev ◽  
◽  
Lyudmila Barkhatova ◽  
Egor Krupenev ◽  
Mikhail Chekan ◽  
...  




2013 ◽  
Vol 62 (10) ◽  
pp. 2828-2838 ◽  
Author(s):  
Janusz Kaczmarek ◽  
Wieslaw Miczulski ◽  
Miroslaw Koziol ◽  
Albin Czubla


2012 ◽  
Vol 546-547 ◽  
pp. 1614-1619
Author(s):  
Fei Jiang Huang ◽  
Xiao Chun Lu ◽  
Jun Yang ◽  
Qing Xiao Shan ◽  
Yong Bin Zhou

The rapid development of various kinds of aerospace application systems requires the appropriate high-accuracy time and frequency standard. This problem can be effectively solved by establishing suitable time and frequency standard in aerospace. Based on the establishment of aerospace satellite visual model, the simulation of satellite visual time on 3-layer constellation structure, including GEO satellite, IGSO satellites and MEO satellites, has been conducted. The visual features of this constellation have been gained. Combining with the major influencing factors of satellite clock correction error, aerospace time synchronization architecture on the basis of layering has been proposed. The time synchronization algorithm in line with this architecture has been researched. The results show that aerospace time frequency standard established based on this layering time synchronization architecture can meet the demand on high-accuracy time frequency of future aerospace application systems.



Author(s):  
I. Blinov ◽  
Yu. Domnin ◽  
S. Donchenko ◽  
N. Koshelyaevsky ◽  
V. Kostromin




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