DocumentCode :
3160984
Title :
Enhanced detector array receiver for optical wireless communication network
Author :
Bushuev, Denis ; Arnon, Shlomi
Author_Institution :
Satellite & Wireless Commun. Lab., Ben-Gurion Univ. of the Negev, Beer-Sheva, Israel
fYear :
2002
fDate :
1 Dec. 2002
Firstpage :
178
Lastpage :
180
Abstract :
Optical wireless communication is expected to become a promising solution for the "last mile problem". But while laser communication in space can transmit information over long distances without great distortion, terrestrial laser communication systems encounter some serious problems. This is due to the fact that the propagation takes place through the atmosphere, where phenomena such as scattering and turbulence are widespread. We suggest a novel "systems approach" for investigating optical terrestrial communication. Thus it is possible to analyze the communication performance for a number of links simultaneously. The approach is based on concepts borrowed from imaging theory. These concepts involve the use of the optical transfer function (OTF), which describes the object in terms of spatial frequencies. We use some of the models that were developed to characterize the atmospheric channel as a general configuration of an optical communication system. An appropriate trial example of the use of the imaging approach within the communication sphere was selected; this was the calculation of the minimal angular separation between user stations. The critical angle was determined by studying communication performance parameters of the main signal such as BER, for a specific detector array.
Keywords :
atmospheric light propagation; atmospheric turbulence; error statistics; laser beam applications; light scattering; optical arrays; optical links; optical receivers; optical transfer function; optical transmitters; BER; OTF; atmospheric channels; atmospheric scattering/turbulence; bit error rate; communication link performance; critical angle; imaging theory; laser communication distortion; light propagation; optical detector array receivers; optical transfer functions; optical wireless communication networks; spatial frequency object description; terrestrial laser communication systems; user station minimal angular separation; Adaptive optics; Laser noise; Optical arrays; Optical distortion; Optical fiber networks; Optical imaging; Optical receivers; Optical scattering; Sensor arrays; Wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical and Electronics Engineers in Israel, 2002. The 22nd Convention of
Print_ISBN :
0-7803-7693-5
Type :
conf
DOI :
10.1109/EEEI.2002.1178387
Filename :
1178387
Link To Document :
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