Aperture averaging and BER for Gaussian beam in underwater oceanic turbulence
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Date
2018
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Elsevier Science BV
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Abstract
In an underwater wireless optical communication (UWOC) link, power fluctuations over finite-sized collecting lens are investigated for a horizontally propagating Gaussian beam wave. The power scintillation index, also known as the irradiance flux variance, for the received irradiance is evaluated in weak oceanic turbulence by using the Rytov method. This lets us further quantify the associated performance indicators, namely, the aperture averaging factor and the average bit-error rate (<BER>). The effects on the UWOC link performance of the oceanic turbulence parameters, i.e., the rate of dissipation of kinetic energy per unit mass of fluid, the rate of dissipation of mean-squared temperature, Kolmogorov microscale, the ratio of temperature to salinity contributions to the refractive index spectrum as well as system parameters, i.e., the receiver aperture diameter, Gaussian source size, laser wavelength and the link distance are investigated.
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Keywords
Oceanic Propagation, Optical Communications, Aperture Averaging, Scintillation
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Citation
Gökçe, M.C., Baykal, Y.K. (2018). Aperture averaging and BER for Gaussian beam in underwater oceanic turbulence. Optic Communications, 410, 830-835. http://dx.doi.org/10.1016/j.optcom.2017.11.049
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Source
Optic Communications
Volume
410
Issue
Start Page
830
End Page
835