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Multi-hop convergent FSO-UWOC system to establish a reliable communication link between the islands

机译:多跳收敛FSO-UWOC系统,建立岛屿之间的可靠通信联系

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摘要

Most part of the earth is filled with water. Oceans hold around 97% of this water, and hence they are the heart of mother earth. People use these oceans for traveling, edibles, and communication. Many islands in this world consist of a large number of sub-islands. Establishing a communication link or a network between these sub-islands is highly challenging one. In this paper, we proposed a decode-and-forward multi-hop convergent free space optical - underwater wireless optical communication (FSO-UWOC) system for establishing high-speed network connectivity between the islands. The closed form expressions of outage probability of the differential phase shift keying (DPSK) based FSO-UWOC system over a Malaga distributed FSO channel and Gamma-Gamma distributed UWOC channel is derived. The results are analyzed and plotted for different weather conditions, turbulences and pointing errors of FSO and UWOC, respectively. The simulated results show that the proposed system will be useful in design of convergent UWOC-FSO system in coastal environments where the weather changes frequently such as clear, rain, haze etc.
机译:地球的绝大部分被装满了水。海洋围抱这种水的97%,因此他们是大地母亲的心脏。人们使用这些跨洋旅行,零嘴,和沟通。在这个世界上的许多岛屿由大量子岛的。建立这些子岛之间的通信链路或网络是高度挑战之一。在本文中,我们提出了一个解码转发多跳收敛自由空间光 - 水下无线光通信(FSO-UWOC)系统,为岛屿之间建立高速网络连接。在差分相移键控(DPSK)基于FSO-UWOC系统通过马拉加中断概率的封闭形式的表达式分布式FSO信道和伽玛伽玛分布UWOC通道被导出。结果进行了分析,并绘制了分别不同的天气条件下,湍流和FSO的指向误差和UWOC。模拟结果表明,该系统将处于收敛UWOC-FSO系统在沿海环境的设计,其中天气变化频繁,如清晰,雨,雾等有用

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