Future of Free Space Communication Systems (FSCS): An Overview

H. Kashif, M. Khan
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Abstract

Wireless communication systems become more demanding in the current era due to new bandwidth hungry applications: video-on-demand, online streaming, online sale, and purchase and cloud computing. High data rates applications increase the requirements for wireless capacity. The available radio and microwave frequency bands are dense enough to be used for launching additional high bandwidth applications. There is a dire requirement to have such a technology, which can fulfill the current demands. Optical communication is an emerging technology being used to overcome the scarcity of radio frequency (RF) spectrum. Optical technology has been vulnerable by its deteriorating links over long distances due to atmospheric turbulence and severe weather conditions as well as signal attenuation by external noise. In the paper, the focus is given on the detailed review of the free-space communication system (FSCS) and to evaluate the performance and to recommend for future communication systems. An analysis of the signal behavior affected by weather attenuation and atmospheric turbulence under different turbulent models is also developed. The main contribution of the article is to highlight the research gaps in the area of wireless communication and recommend FSCS as a future promising communication technology among the individual's optical and RF technologies.
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自由空间通信系统(FSCS)的未来:综述
无线通信系统在当前时代对带宽的要求越来越高,因为新的带宽需求巨大的应用:视频点播、在线流媒体、在线销售和购买以及云计算。高数据速率应用增加了对无线容量的要求。可用的无线电和微波频段足够密集,可以用于启动额外的高带宽应用。迫切需要这样一种能够满足当前需求的技术。光通信是一种新兴技术,用于克服射频频谱的稀缺性。由于大气湍流和恶劣天气条件以及外部噪声造成的信号衰减,光学技术在长距离传输过程中会出现链路恶化的问题,这使光学技术非常脆弱。本文对自由空间通信系统(FSCS)进行了详细的综述,并对其性能进行了评价,为未来的通信系统提供了建议。分析了不同湍流模式下天气衰减和大气湍流对信号行为的影响。本文的主要贡献是强调了无线通信领域的研究差距,并推荐FSCS作为个人光学和射频技术中有前途的通信技术。
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