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- W2923935922 abstract "Numerous advantages of underwater wireless optical communication over the traditional acoustic model have been highlighted over the past few years. But the challenges of expanding its range and reducing attenuation still persist. Background noise in particular has been classified into solar and biological radiation. The latter is comprised primarily of bioluminescence, which entails the spontaneous emission of light by marine microorganisms, and is widespread when conditions are favourable. Earlier, this phenomenon has been drawn on in diverse fields, like imaging, genetics and environmental monitoring. But, its advantages in aquatic communication are yet to be fully explored. A heuristic study on the feasibility of marine cooperative diversity, based on bacterial bioluminescence, is carried out and a mathematical model is formulated, taking into account various biotic and abiotic factors that may disturb its steady functioning. Bacteria have been shown to stabilize for long periods on cryodesiccation. Similarly, their light discharge has been controlled by photo-chemically monitoring the cofactor availability. This permits emission only on interaction with the transmitted signal. Additionally, there is a radical reduction in system size. If regulated properly, bioluminescence can eventually prove to be an encouraging option, rather than a hindrance, for the future. To the best of our knowledge, a bio-inspired communication system has been modelled for the first time, proposing a solution for the implementation of underwater cooperative diversity." @default.
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- W2923935922 date "2019-08-01" @default.
- W2923935922 modified "2023-10-18" @default.
- W2923935922 title "Bio-inspired cooperative diversity link in underwater optical wireless communication" @default.
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- W2923935922 doi "https://doi.org/10.1016/j.optlastec.2019.03.029" @default.
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