Design and analysis of OAM-DM underwater wireless optical communication system

Jingyu Wang, Shaohua Zhou, Juan Li, Chengjin Wang
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Abstract

As the main way of underwater data transmission, acoustic communication is still limited by the low-level signal-to-noise ratio and channel capacity. The Orbital Angular Momentum (OAM) based wireless optical communication provides a new dimension to data transmission with an expanded channel capacity. We introduce the basic OAM multiplexing communication system, analyze the basic principle of its transmission process, and verify the feasibility of underwater vortex optical communication by simulation. On this basis, the influence of transmission distance and underwater turbulence on the communication system is studied. Our results show that the transmission performance of the system is better in the transmission range of 30 m, and the influence of turbulence on the system performance increases gradually with the increase of signal-to-noise ratio.
OAM-DM水下无线光通信系统的设计与分析
作为水下数据传输的主要方式,水声通信仍然受到低信噪比和信道容量的限制。基于轨道角动量(OAM)的无线光通信以扩展的信道容量为数据传输提供了一个新的维度。介绍了基本的OAM复用通信系统,分析了其传输过程的基本原理,并通过仿真验证了水下涡旋光通信的可行性。在此基础上,研究了传输距离和水下湍流对通信系统的影响。研究结果表明,系统在30 m传输范围内传输性能较好,且湍流对系统性能的影响随着信噪比的增大而逐渐增大。
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