Performance Investigation of Free Space Optics Link Using Beam Divergence

G. Soni
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Abstract

The various advanced applications of 5G based wireless communications include autonomous self-driven cars, telemedicine, smart spaces (e.g., home, office, etc.), sensor networks, high speed trains, smart cities, and many more [9]. For such data intensive wireless communications, only radio frequency (RF) based wireless systems cannot meet the desired demands because RF band is susceptible to interference, has limited capacity, and requires a heavy license fee to use the spectrum [10]. Hence, other portions of the electromagnetic (EM) spectrum and new technologies are required to be considered for fulfilling the demands of wireless communication systems in the near future. FSO, an OWe-based optical wireless communication system, is one such alternate option. Increased bandwidth demands may be met using free space optical communication or wireless optics, which are both last mile options. The FSO transmits and receives multimedia data using an LED or LASER beam as a high data rate optical link. FSO may be installed for a quarter of the cost of fibre, but communication between the transmitter and receiver must be Line of Sight (LOS). The FSO not only has many advantages but also hampered by some atmospheric conditions, which degrades the link performance. This paper reviews the FSO link design and effect of different atmospheric condition like- fog, scintillation, turbulence, rain etc. In this research paper, the simulation based on optsim to carry out the performance investigation FSO link in investigation by varying the FSO beam divergence angle is being carried out.
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基于光束发散的自由空间光学链路性能研究
基于5G的无线通信的各种先进应用包括自动驾驶汽车、远程医疗、智能空间(例如,家庭、办公室等)、传感器网络、高速列车、智能城市等等。对于这种数据密集型无线通信,只有基于射频(RF)的无线系统不能满足期望的需求,因为RF频段容易受到干扰,容量有限,并且需要高额的许可费用才能使用频谱[10]。因此,为了在不久的将来满足无线通信系统的需求,需要考虑电磁(EM)频谱的其他部分和新技术。FSO,一种基于owe的光学无线通信系统,就是这样一种替代选择。增加的带宽需求可以使用自由空间光通信或无线光学来满足,这两者都是最后一英里的选择。FSO使用LED或激光束作为高数据速率光链路传输和接收多媒体数据。FSO的安装成本可能是光纤的四分之一,但发射器和接收器之间的通信必须是视线(LOS)。无线光通信有许多优点,但也受到一些大气条件的制约,导致链路性能下降。本文综述了雾、闪烁、湍流、雨等不同大气条件下FSO链路的设计和效果。在本研究中,采用基于优化的仿真方法,通过改变FSO波束发散角对FSO链路进行性能研究。
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