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Dispersion Analysis of 1.55um Free-space Optical Communications through a Heavy Fog Medium

机译:通过重型雾介质分散分析1.55U自由空间光学通信

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Free-space optical communication (FSOC) is a method by which one transmits a modulated beam of visible or infrared light through the atmosphere for broadband applications. FSOC makes connectivity possible between high-rise buildings and metropolitan and intercity communication infrastructures. While radio frequency (RF) communication still dominates the commercial communications networks, it has not been able to meet the increasing demand for larger data rates. Reliable communications require a good understanding of the surrounding environment that affects the communications channel. The fundamental limitation of FSOC arises from the environment through which light propagates. The presence of particles, such as fog and clouds in the propagation channel introduces spatial and angular dispersion to the transmitted light signals. Attenuation of the light signals through the propagation medium is a combined effect of dispersion and absorption by particles. A mode of ray tracing is developed to simulate light going through the medium. A 2-D histogram is presented to investigate correlation of spatial and angular dispersion of the received light.
机译:自由空间光通信(FSOC)是一种通过用于宽带应用的大气传输调制的可见光或红外光束的方法。 FSOC在高层建筑和大都市和城市间通信基础设施之间进行连接。虽然射频(RF)通信仍然占据商业通信网络的占主导地位,但它无法满足对更大数据速率的越来越大。可靠的通信需要良好地了解影响通信渠道的周围环境。 FSOC的基本限制来自光传播的环境。传播信道中的颗粒的存在,例如雾和云引入到透射光信号的空间和角度色散。通过传播介质衰减光信号是分散和通过颗粒的吸收的组合效果。开发了一种光线跟踪模式以模拟介质的光线。提出了2-D直方图以研究所接收光的空间和角度分散的相关性。

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