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BER Performance of Free-Space Optical Transmission with Spatial Diversity

IEEE Transactions on Wireless Communications · 2007 · Vol. 6(8) · pp. 2813–2819
S.M. NavidpourMurat UysalM. Kavehrad

Abstract

Free space optical (FSO) communications is a cost-effective and high bandwidth access technique, which has been receiving growing attention with recent commercialization successes. A major impairment in FSO links is the turbulence- induced fading which severely degrades the link performance. To mitigate turbulence-induced fading and, therefore, to improve the error rate performance, spatial diversity can be used over FSO links which involves the deployment of multiple laser transmitters/receivers. In this paper, we investigate the bit error rate (BER) performance of FSO links with spatial diversity over log- normal atmospheric turbulence fading channels, assuming both independent and correlated channels among transmitter/receiver apertures. Our analytical derivations build upon an approximation to the sum of correlated log-normal random variables. The derived BER expressions quantify the effect of spatial diversity and possible spatial correlations in a log-normal channel.

Optical Wireless Communication TechnologiesOptical Network TechnologiesAdvanced Photonic Communication SystemsFadingAntenna diversityBit error rateFree-space optical communicationComputer scienceTransmitterDiversity schemeTransmission (telecommunications)TelecommunicationsSpatial correlation
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References
Free-space optical communication through atmospheric turbulence channels
IEEE Transactions on Communications · 2002 · 1,593 citations
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