A High Speed Underwater Wireless Communication Through a Novel Hybrid Opto-Acoustic Modem Using MIMO-OFDM

Q3 Engineering
C. Pallavi, G. Sreenivasulu
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引用次数: 0

Abstract

For efficient underwater opto/acoustic communication, this research proposes the use of MIMO in conjunction with OFDM. OFDM (Orthogonal Frequency-Division Multiplexing) and MIMO (Multiple Input Multiple Output) systems may be widely used in wireless networks to provide high data transfer rates, resistance to multipath fading, and an increase in the channel's Spatial Multiplexing and Spatial Diversity Gain. Transmission speed can be increased by altering bandwidth or spectral efficiency (or both) in wireless data transmission systems. Systems that use Multi-Input Multi-Output (MIMO) technologies have the potential to improve spectral efficiency by employing several transmitters and receivers in tandem. To maximize spectrum efficiency and minimize inter-symbol interference, Orthogonal Frequency Division Multiplexing (OFDM) divides signals into a number of narrow band channels (ISI). In other words, combining the benefits of MIMO with OFDM will boost spectral efficiency while also increasing the link's dependability and spectral gain. MIMO and OFDM approaches are integrated in this research to increase opto-acoustic modem performance. MATLAB Simulink tool was used to design and simulate the proposed hybrid opto-acoustic modem with MIMO-OFDM for optical and acoustic (EM) signal transmission and reception. The simulation results verify the viability of the proposed method, and the measured bit-error rate (BER) for acoustic (EM) signal is 0.4958 and optical signal is 0.5101. The overall bandwidth of the system is from -150 MHz to +150 MHz.
一种基于MIMO-OFDM的新型混合光声调制解调器的高速水下无线通信
为了实现高效的水下光/声通信,本研究提出将MIMO与OFDM结合使用。OFDM(正交频分复用)和MIMO(多输入多输出)系统可以广泛用于无线网络中,以提供高数据传输速率、对多径衰落的抵抗以及信道的空间复用和空间分集增益的增加。可以通过改变无线数据传输系统中的带宽或频谱效率(或两者)来提高传输速度。使用多输入多输出(MIMO)技术的系统有可能通过串联使用几个发射机和接收机来提高频谱效率。为了最大化频谱效率并最小化符号间干扰,正交频分复用(OFDM)将信号划分为多个窄带信道(ISI)。换句话说,将MIMO与OFDM的优点相结合将提高频谱效率,同时也提高链路的可靠性和频谱增益。本研究将MIMO和OFDM方法相结合,以提高光声调制解调器的性能。利用MATLAB Simulink工具设计并仿真了所提出的用于光声(EM)信号传输和接收的MIMO-OFDM混合光声调制解调器。仿真结果验证了所提出方法的可行性,声学(EM)信号的测量误码率(BER)为0.4958,光学信号为0.5101。系统的总带宽为-150 MHz至+150 MHz。
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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来源期刊
Instrumentation Mesure Metrologie
Instrumentation Mesure Metrologie Engineering-Engineering (miscellaneous)
CiteScore
1.70
自引率
0.00%
发文量
25
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