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Optical Wireless Communications With Heterodyne Detection Over Turbulence Channels With Pointing Errors

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Auteur
Sandalidis, H. G.; Tsiftsis, T. A.; Karagiannidis, G. K.
Date
2009
DOI
10.1109/jlt.2009.2024169
Sujet
Atmospheric turbulence channel
bit-error rate (BER)
heterodyne
detection
misalignment fading
optical wireless (OW) communications
pointing errors
ATMOSPHERIC-TURBULENCE
RATE PERFORMANCE
SYSTEMS
LINKS
OPTIMIZATION
Engineering, Electrical & Electronic
Optics
Telecommunications
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Résumé
We study the error performance of an heterodyne differential phase-shift keying (DPSK) optical wireless (OW) communication system operating under various intensity fluctuations conditions. Specifically, it is assumed that the propagating signal suffers from the combined effects of atmospheric turbulence-induced fading, misalignment fading (i.e., pointing errors) and path-loss. Novel closed-form expressions for the statistics of the random attenuation of the propagation channel are derived and the bit-error rate (BER) performance is investigated for all the above fading effects. Numerical results are provided to evaluate the error performance of OW systems with the presence of atmospheric turbulence and/or misalignment. Moreover, nonlinear optimization is also considered to find the optimum beamwidth that achieves the minimum BER for a given signal-to-noise ratio value.
URI
http://hdl.handle.net/11615/32843
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