水下无线光通信系统性能增强研究

Pooja Singh, K. Chaitanya, Sonali, A. Dixit, V. Jain
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引用次数: 2

摘要

水下光无线通信有许多可行的应用,但最大的挑战是通信介质是水。水的特性因地而异。由于高吸收和散射,链路长度被限制在几米。在这项工作中,我们增加了不同信道条件下的链路长度。为了实现这一目标,我们在接收器上使用半导体光放大器(SOA),并在各种水类型中使用纠错码(ecc),即卷积码和涡轮码,以减轻信道影响。SOA降低了接收器所需的功率,从而增加了相同误码率(BER)的链路长度。然而,如果水质下降太多,例如在浑浊的港口,SOA就无法执行。与此相反,使用ecc可以显著降低功率要求并增加链路长度。我们还使用这两种模型在较低功耗下实现了所需的性能并获得了更长的链路长度。仿真使用matlab软件完成。并对SOA辅助系统的仿真结果进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Performance Enhancement in Underwater Optical Wireless Communication System
Underwater optical wireless communication has many plausible applications, but the biggest challenge is the communication medium that is water. Water characteristic changes from place to place. Due to high absorption and scattering, link length is limited to a few meters. In this work, we increase the link length under different channel conditions. For achieving this, we use a semiconductor optical amplifier (SOA) at the receiver and error-correcting codes (ECCs), namely convolution code and turbo code, in various water types to mitigate the channel effects. SOA decreases the power required at the receiver, thus, increasing the link length for the same bit error rate (BER). However, SOA fails to perform as water quality degrades too much, such as in a turbid harbor.In contrast to this, the use of ECCs can significantly reduce the power requirement and increase the link length. We have also employed both the models to achieve the desired performance at lower power and attain more link length. Simulation is done using MATLABO. Analytical results for SOA assisted system is also plotted along with the simulation.
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