Performance analysis of underwater vertical wireless optical communication links using selection combining

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Date

2023

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Optica Publishing Group (formerly OSA)

Abstract

In this paper, we have investigated the performance of underwater vertical wireless optical communication (UVWOC) links employing on–off key modulation for selection combining based receive diversity schemes in the presence of underwater turbulence, pointing errors, and attenuation losses. Due to variations in temperature and salinity along the ocean’s depth, turbulence-induced fading affects the performance of the underwater vertical wireless optical link. The vertical link of the underwater medium influenced by a strong turbulence regime is modeled using cascaded gamma–gamma distribution considering multiple non-identical layers along with attenuation losses and pointing errors. We have derived closed-form expressions for the average bit error rate (BER) and outage probability (OP) for the link employing multiple detectors at the receiving end. The accuracy of all of the closed-form expressions derived in this paper has been validated using Monte Carlo simulations. © 2023 Optica Publishing Group.

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Keywords

Bit error rate, Errors, Intelligent systems, Monte Carlo methods, Optical communication, Optical links, Underwater optical wireless communication, Attenuation loss, Closed-form expression, Diversity schemes, Optical communication links, Performance, Performances analysis, Pointing errors, Receive-diversity, Selection combining, Wireless optical communication, Turbulence, article, Monte Carlo method, nonhuman, optics, probability, salinity, temperature

Citation

Applied Optics, 2023, 62, 31, pp. 8229-8234

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