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Free Space Optical (FSO) Communications, Towards the Speeds of Wireline Networks

机译:自由空间光通信(FSO),迈向有线网络的速度

摘要

Rapid increase in the use of wireless services over the last two decades has lead the problem of the radio-frequency (RF) spectrum exhaustion. More specifically, due to this RF spectrum scarcity, additional RF bandwidth allocation, as utilized in the recent past, is not anymore a viable solution to fulfill the demand for more wireless applications and higher data rates. Among the many proposed solutions, optical wireless communication or free-space optical (FSO) systems have gained an increasing interest due to their advantages including higher bandwidth and higher capacity compared to the traditional RF communication systems. This promising technology offers full-duplex Gigabit throughput in certain applications and environment while benefiting from a huge license-free spectrum, immunity to interference, and high security. These features of FSO communication systems potentially enable solving the issues that the RF communication systems face due to the expensive and scarce RF spectrum. The first part of the talk will give an overview of FSO communication systems by offering examples of advantages and application areas of this emerging technology. In the second part of talk, we will focus on some recent results and on-going research directions in the accurate characterization of the performance of FSO systems in the presence of inevitable impairments due to atmospheric turbulence and misalignment between transmitter and receiver.
机译:在过去的二十年中,无线服务的使用迅速增加已导致射频(RF)频谱耗尽的问题。更具体地说,由于RF频谱的稀缺性,近来使用的附加RF带宽分配不再是满足更多无线应用和更高数据速率需求的可行解决方案。在许多提出的解决方案中,光学无线通信或自由空间光学(FSO)系统由于具有与传统的RF通信系统相比具有更高的带宽和更高的容量等优点而受到越来越多的关注。这项有前途的技术可在某些应用和环境中提供全双工千兆位吞吐量,同时受益于巨大的免许可证频谱,抗干扰能力和高安全性。 FSO通信系统的这些功能有可能解决由于昂贵且稀缺的RF频谱而导致RF通信系统面临的问题。演讲的第一部分将通过提供这种新兴技术的优势和应用领域的示例来概述FSO通信系统。在第二部分的讨论中,我们将重点关注一些近期的研究成果和正在进行的研究方向,这些研究结果将在由于大气湍流和发射器与接收器之间的不对中而不可避免地造成损害的情况下,准确表征FSO系统的性能。

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  • 作者

    Alouini Mohamed-Slim;

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  • 年度 2015
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