DocumentCode
524569
Title
Studies on C2n and its effects on free space optical communication system
Author
Liu, Peng ; Kazaura, Kamugisha ; Wakamori, Kazuhiko ; Matsumoto, Mitsuji
Author_Institution
Global Inf. & Telecommun. Inst., Waseda Univ., Tokyo, Japan
fYear
2010
fDate
15-18 June 2010
Firstpage
1
Lastpage
6
Abstract
With the emergence of new innovative wireless technologies, there is an increased demand for technologies to provide high speed seamless connectivity between two places. Compared with radio frequency communication, free space optical communication has many advantages. It can provide very high speed communication services. But it is deeply influenced by the atmosphere turbulence, when used in terrestrial application. It is very important to do some researches on the atmosphere turbulence and its effects on the free space optical communication. We have used an experimental free space optical communication system to measure the characterization of atmosphere turbulence. In this paper we mainly analyze the experiment data of atmosphere turbulence. We also review the theory of atmosphere turbulence and analyze the relation with the characterization of atmosphere turbulence and the receiving power of the free space optical system. From the data we found that the atmosphere turbulence changed with time and weather. And we get some results from analyze the experiment data. The results from the experiment are very important in the design optimization of free space optics system performance in actual operational environments.
Keywords
optical communication; radiocommunication; space communication links; Cn2; atmosphere turbulence; free space optical communication system; free space optics system optimization; high speed communication services; high speed seamless connectivity; innovative wireless technologies; radio frequency communication; space optical communication; Atmosphere; Atmospheric measurements; Data analysis; Design optimization; Extraterrestrial measurements; High speed optical techniques; Optical fiber communication; Radio frequency; Space technology; System performance; FSO(free space optics); atmospheric turbulence; centroid; characterization of atmosphere turbulence;
fLanguage
English
Publisher
ieee
Conference_Titel
Information and Telecommunication Technologies (APSITT), 2010 8th Asia-Pacific Symposium on
Conference_Location
Kuching
Print_ISBN
978-1-4244-6413-5
Electronic_ISBN
978-4-88552-244-4
Type
conf
Filename
5532052
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