Research on underwater optical communication technology based on RS coding and OFDM

Xiaole Zhang, Xiaochuan Tan, Z. Li, Shaobo Li, Biyao Wang
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Abstract

Underwater wireless optical communication can realize short-distance, high-speed communication. It effectively supplements the vacancy of optical cable communication, radio communication and underwater acoustic communication in underwater networking. Using Orthogonal Frequency Division Multiplexing (OFDM) technology in underwater wireless optical communication can effectively reduce the influence of multipath effects in the channel and improve system communication performance. The error correction ability of Reed-solomon (RS) code under medium code length is close to the theoretical value. This letter analyzes the underwater optical channel model, simulates the underwater optical communication system based on RS coding and OFMD, and studies the influence of communication distance and signal-to-noise ratio (SNR) on bit error rate (BER), as well as the error code distribution in the presence of Doppler shift and the impact of interleaving on system performance. The simulation results show that the BER of received signal increases with the increase of communication distance and the decrease of SNR; When Doppler shift exists, error codes appear in concentrated positions. Deep interleaving can effectively utilize the error correction ability of RS coding, reduce the influence of Doppler shift, and improve the communication quality of the system.
基于RS编码和OFDM的水下光通信技术研究
水下无线光通信可实现短距离、高速通信。它有效地弥补了水下组网中光缆通信、无线电通信和水声通信的空白。在水下无线光通信中采用正交频分复用(OFDM)技术可以有效降低信道中多径效应的影响,提高系统通信性能。中等码长条件下,RS码的纠错能力接近理论值。本文分析了水下光信道模型,仿真了基于RS编码和OFMD的水下光通信系统,研究了通信距离和信噪比(SNR)对误码率(BER)的影响,以及存在多普勒频移时的误码分布和交错对系统性能的影响。仿真结果表明,接收信号的误码率随着通信距离的增加和信噪比的降低而增大;当多普勒频移存在时,错误码出现在集中的位置。深交错可以有效地利用RS编码的纠错能力,减小多普勒频移的影响,提高系统的通信质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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