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Eliminating the effect of fog attenuation on FSO link by multiple TX/RX system with travelling wave semiconductor optical amplifier

机译:具有行波半导体光放大器的多个TX / RX系统对FOG衰减对FSO链路的影响

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Free Space Optics (FSO) Technology is the advanced wireless communication system that provides higher bandwidth with a higher data rate transmission over higher link range. The major challenge on free space optics technology is atmospheric attenuation that hampers data transmission of the system by increasing bit error rate. Fog is the atmospheric condition which causes highest amount of signal attenuation. Travelling wave semiconductor optical amplifier is a functional device that can eliminate the effect of fog on free space optical communication link. Multiple TX/RX system architecture with the existence of this efficient device is capable of improving the performance under fog atmospheric effect by ensuring higher received power and lower bit error rate. Our paper implements the architecture of multiple TX/RX system with travelling wave semiconductor optical amplifier under fog atmospheric condition using simulation tool Optisystem 7. The effort in this paper is to overcome the effect of fog attenuation on free space optics link by the evaluation of performance through simulated results of the implemented model in terms of Q factor, bit error rate, received power and eye height.
机译:自由空间光学(FSO)技术是先进的无线通信系统,提供更高的带宽,具有更高的链路范围内的数据速率传输。自由空间光学技术的主要挑战是大气衰减,通过增加误码率来妨碍系统的数据传输。雾是大气条件,导致最高量的信号衰减。旅行波半导体光放大器是一种功能装置,可以消除雾对自由空间光通信链路的效果。具有该高效设备的多个TX / RX系统架构能够通过确保更高的接收功率和更低的误码率来提高雾气效果下的性能。我们的论文实现了多个TX / RX系统的架构,采用仿真工具电磁系统在迷雾大气条件下具有行波半导体光放大器的结构。本文的努力是克服雾衰减对自由空间光学链路的影响,通过评估性能的评估通过在Q因子,误码率,接收功率和眼睛高度方面的实施模型的模拟结果。

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