JOURNAL ARTICLE

An Optical Intelligent Reflecting Surface-Assisted Underwater Wireless Communication System

Rehana SalamAnand SrivastavaVivek Ashok BoharaAshwin Ashok

Year: 2023 Journal:   IEEE Open Journal of the Communications Society Vol: 4 Pages: 1774-1786   Publisher: IEEE Communications Society

Abstract

Optical intelligent reflecting surfaces (OIRS) have the potential to enhance the capacity of the next generation optical wireless communication systems by re-configuring the propagation environment of optical waves. In this work, a submerged OIRS and a planar mirror surface (PMS) are used to build up a non-line of sight (NLOS) underwater wireless optical communication (UWOC) system. An NLOS UWOC setup, which makes use of the total internal reflection (TIR) phenomenon, serves as a benchmark against which the OIRS/PMS-assisted UWOC systems are compared. With the help of the Mellin inverse transform, Meijer’s G function, and Fox’s H-function, the closed-form expressions for the probability density function (PDF), cumulative distribution function (CDF), average spectral efficiency (SE), average energy efficiency (EE), outage probability, and average bit error rate (BER) of the proposed systems are derived. Further, an asymptotic analysis of average SE is performed to illustrate a better understanding of these proposed system’s performance at high SNR. The simulation results indicate that the OIRS-assisted UWOC system shows improved performance in comparison to benchmark scenario. Additionally, the efficient zones of OIRS deployment are analyzed.

Keywords:
Non-line-of-sight propagation Computer science Cumulative distribution function Benchmark (surveying) Optical wireless Probability density function Communications system Underwater Wireless Reflection (computer programming) Pinhole (optics) Function (biology) Optical communication Optics Electronic engineering Telecommunications Physics Mathematics Engineering Statistics

Metrics

20
Cited By
3.32
FWCI (Field Weighted Citation Impact)
45
Refs
0.91
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Optical Wireless Communication Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Wireless Communication Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Underwater Vehicles and Communication Systems
Physical Sciences →  Engineering →  Ocean Engineering
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