Beam Divergence Loss Mitigation in Free Space Optical Communication Channel Using Field of View Technique

Sule Lamido
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Abstract

A rapid advancement in the electronics and telecommunications industries has been observed. As a result, Communication gadgets are becoming more powerful and are more widely adopted. The demand for high data rate transmission is increasing. This has led to spectrum scarcity in Radio Frequency (RF) systems. Consequently, it is necessary to explore other technical means to meet the increasing demand for higher data rates. Free Space Optical Communication (FSOC) is a promising technology that offers one of such means. However, the major technical challenge in the FSOC systems is that, their performance is limited by atmospheric impairments such as: absorption, scattering and turbulence caused by rain, cloud, snow, wind, dust, aerosol, and fog. This research is aimed to addressed beam divergence challenge due to fog and raindrop in a tropical climate using wider field of view technique (FoV). The result showed that, for the fog measurement using mini solar panel at the receiver, the system achieved higher SNR of 60 dB at corresponding BER of 10-4. While, with the photodiode, the system achieved an SNR of 38 dB at same BER. For the rain measurement the same procedure was adopted and the system achieved higher SNR of 90 dB and 58 dB at same BER utilizing both solar panel and photodiode respectively. The result showed that, the fog impairment attenuates optical signal more than of rain by 34 % averagely
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利用视场技术降低自由空间光通信信道中的光束发散损耗
人们观察到电子和电信工业的迅速发展。因此,通讯工具变得越来越强大,被越来越广泛地采用。对高数据速率传输的需求越来越大。这导致了射频(RF)系统中的频谱稀缺。因此,有必要探索其他技术手段来满足对更高数据速率日益增长的需求。自由空间光通信(FSOC)是一种很有前途的技术,它提供了一种这样的手段。然而,FSOC系统的主要技术挑战是,它们的性能受到大气损伤的限制,例如:由雨、云、雪、风、灰尘、气溶胶和雾引起的吸收、散射和湍流。本研究旨在利用宽视场技术(FoV)解决热带气候下雾和雨滴造成的光束发散挑战。结果表明,在接收端使用小型太阳能板进行雾测量时,系统在相应的误码率为10-4时,信噪比达到60 dB。而采用光电二极管,在相同的误码率下,系统实现了38 dB的信噪比。雨水测量采用了同样的方法,在相同的误码率下,系统分别利用太阳能电池板和光电二极管实现了90 dB和58 dB的高信噪比。结果表明,雾对光信号的衰减平均比雨大34%
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