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Performance of Non-Line-of-Sight Underwater Optical Wireless Communications

机译:非视线水下光学无线通信的性能

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Underwater optical wireless communications (UOWC) offers higher data rates, lower latency and high bandwidths for underwater communications. However, UOWC systems suffer from significant scattering and absorption introduced by the channel and may also be blocked by countless obstructions and obstacles under the water. Thus, in this paper, the characteristics of a non-line-of-sight (NLOS) UOWC link with multiple scattering based on Monte Carlo simulation is considered. We address the channel response with different channel modulation schemes, include variation in the receiver field of view (FOV) and then proceed to evaluate the bit error rate (BER) and throughput of the system. In addition to a range of modulation methods, variation in the receiver bandwidth is also included. It is seen that distances over 80 meters are possible, providing BER values of 10−4 or better and throughput of 2.1 Mbps. This demonstrates that NLOS-UOWC offers a route to transmission at higher speeds than incumbent technologies in areas such as inshore environmental monitoring or oil exploration.
机译:水下光无线通信(UOWC)为水下通信提供更高的数据速率,更低的延迟和更高的带宽。但是,UOWC系统遭受通道引入的大量散射和吸收,并且还可能被水下的无数障碍物和障碍物所阻塞。因此,在本文中,考虑了基于蒙特卡罗模拟的具有多重散射的非视距(NLOS)UOWC链路的特性。我们用不同的信道调制方案解决信道响应,包括接收机视场(FOV)的变化,然后着手评估系统的误码率(BER)和吞吐量。除了一系列调制方法之外,还包括接收机带宽的变化。可以看到,距离超过80米是可能的,提供的BER值为10 -4 或更高,吞吐量为2.1 Mbps。这表明,在近海环境监测或石油勘探等领域,NLOS-UOWC提供了比现有技术更高的传输速度。

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