UDC 519.245
UDC 528.021.78
This paper discusses a proposed algorithm for statistical modeling of the impulse response of a laser non-line-of-sight optical communication channel through the water-atmosphere interface. The impulse response is the basis for assessing channel quality parameters, such as the signal-to-noise ratio, path loss, maximum number of transmitted bits per unit time, and the bit error rate.
Monte Carlo method, impulse response, scattered-light optical communication, water-atmosphere interface, water disturbance
1. M. Ghanbari, M. Ataee and S. M. Sajad Sadough, "Outage Performance Analysis for UAV-Based Mixed Underwater-FSO Communication Under Pointing Errors," 2022 4th West Asian Symposium on Optical and Millimeter-wave Wireless Communications (WASOWC), Tabriz, Iran, Islamic Republic of, 2022, pp. 1-5, doi:https://doi.org/10.1109/WASOWC54657.2022.9798419.
2. X. Sun et al., "Field Demonstrations of Wide-Beam Optical Communications Through Water–Air Interface," in IEEE Access, vol. 8, pp. 160480-160489, 2020, doi:https://doi.org/10.1109/ACCESS.2020.3020878.
3. Bushnaq, Osama & Natalizio, Enrico & Akyildiz, Ian. (2024). Path-loss Analysis and Link Design for Optical Wireless Communication Between Underwater and Aerial Drones.https://doi.org/10.1109/WCNC57260.2024.10571332.
4. Kodama, Takahiro & Kariya, Ayumu & Kuwahara, Kiichiro & Kobori, Fumiya & Shimada, Keiji & Hayashida, Shogo. (2024). Real-time full-duplex transmission experiment for air and underwater invisible light communication system.https://doi.org/10.1364/opticaopen.26142865.
5. Tarasenkov M. V., Poznaharev E. S., Fedosov A. V., Kudryavcev A. N., Belov V. V. Ocenka vozmozhnostey opticheskoy svyazi vne pryamoy vidimosti s BPLA cherez granicu razdela «voda–atmosfera» . // Optika atmosfery i okeana. 2025. T. 38. № 01. S. 7–13. DOI:https://doi.org/10.15372/AOO20250101.
6. Cox C., Munk W. Measurement of the Roughness of the Sea Surface from Photographs of the Sun's Glitter // JOSA. 1954. Vol. 44, No, 11, P. 838-850.
7. Metod Monte-Karlo v atmosfernoy optike / pod red. G.I. Marchuka. Novosibirsk: Nauka, Sibirskoe otdelenie, 1976. 282 s.
8. Born M., Vol'f E. Osnovy optiki. M: Nauka. 1973. 720 c.



