Sep 2026· IEEE Latin America Transactions· Vol 24, pp. 880-892· 0 citations· 21 references
Abstract
Underwater Visible Light Communication (UVLC) offers high data rates, low latency, and strong physical-layer security, making it as an alternative to acoustic and RF systems for real-time underwater applications. However, its performance is severely degraded by absorption, scattering, and turbulence-induced fading. To enhance link reliability, recent advances in Non-Orthogonal Multiple Access (NOMA) and Intelligent Reflecting Surfaces (IRS) are being integrated into UVLC systems. NOMA enables simultaneous multiuser access through power-domain multiplexing, improving spectral efficiency and connectivity, while IRS enhances signal strength and coverage by intelligently reflecting and directing optical beams. Motivated by these benefits, we propose a hybrid IRSNOMA framework for UVLC to improve link reliability and mitigate turbulence effects. A composite channel model is formulated by combining direct and IRS-reflected paths under absorption, scattering, and turbulence modeled using the Exponential Generalized Gamma (EGG) distribution with pointing errors. Closed-form expressions for the outage probability and average bit error rate (ABER) are derived in terms of the Meijer-G function. System performance is evaluated under various configurations, and Monte Carlo simulations validate the analytical results, demonstrating excellent match and highlighting the effectiveness of the proposed IRSNOMA-assisted UVLC design.
This paper comprehensively reviews underwater wireless optical communication UWOC technology, emphasizing its critical role in marine exploration and resource development. UWOC enables high-speed data transfer and large-scale information processing but faces challenges in complex underwater environments, including sign...
Xing-Cen Qian· ITM Web of Conferences· 0 citations
Underwater Optical Wireless Communication (UOWC) has emerged as a promising technology for high-speed underwater data transmission, offering significantly higher bandwidth and lower latency compared to acoustic and Radio Frequency (RF) technologies. However, the underwater medium introduces severe impairments that degr...
Shaymaa Mahmoud, A. Purwita, M. Alouini· 0 citations
Free-space optical (FSO) communication has emerged as a promising technology, but its performance is highly dependent on line-of-sight (LOS) conditions. To address this limitation, we propose a multistage optical intelligent reflecting surface (OIRS)-assisted FSO communication system, which utilizes multiple OIRS nodes...
Shunyuan Shang, Emna Zedini, A. Kammoun et al.· IEEE Transactions on Wireles...· 0 citations
The paper discusses the latest developments in underwater visible light communication (UVLC), with an emphasis on channel modeling and intelligent anti-interference algorithms. It initially points out the shortcomings of classical Beer-Lambert-based models, which assume stationary and uniform water conditions and negle...
Underwater wireless communication is constrained by frequency-dependent attenuation, severe multipath propagation, slow acoustic propagation, Doppler-induced time scaling, and highly nonstationary noise. These effects make the usable bandwidth strongly dependent on distance and lead to a channel that is simultaneously...
Heetae Jin, Dong Chan Park· International Conference on...· 0 citations
The Internet of Underwater Things (IoUT) is emerging as a key enabling technology for subsea monitoring, offshore oil and gas operations, and autonomous underwater systems. However, underwater wireless communication remains challenging due to severe attenuation, scattering, and environmental variability. Among availabl...