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Analysis of Terrestrial FSO Link Performance Considering Different Fog Conditions and Internal Parameters of the System

机译:考虑不同雾条件和系统内部参数的地面FSO链路性能分析

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Free space optical communication being one of the effective technologies has higher signal bandwidth and less power for transmission. Atmosphere is used as a communication channel; due to which atmospheric turbulence occurs leading to degradation in the performance of the communication system. The atmospheric turbulence analysed here is the effect of fog attenuation on performance of FSO link. Data for two months i.e January and November for Delhi region have been analysed and simulated using Kim's model. Q-factor has been analyzed by varying the transmission power and range of the FSO system. The simulation results show that for error free transmission of data during the fog months, the transmitting power between 25-35 dBm is recommended to be used for the optimal transmission range from 6-8 Km. Internal parameters on which the performance of the FSO communication depends are divergence angle, wavelength, transmission bandwidth etc. The purpose is to optimize these factors to achieve the maximum output and throughput. In this paper FSO model has been designed using PIN and APD photodiode at receiver's side. Using the model, Q-Factor has been estimated for different beam divergences and wavelengths at varying bit rates. The results have been compared and analyzed for the two types of photodiodes.
机译:作为有效技术之一的自由空间光通信具有更高的信号带宽和更少的传输功率。大气被用作沟通渠道;因此,大气湍流会导致通信系统性能下降。此处分析的大气湍流是雾气衰减对FSO链路性能的影响。使用Kim模型对德里地区两个月(即1月和11月)的数据进行了分析和模拟。通过改变FSO系统的传输功率和范围来分析Q因子。仿真结果表明,要在大雾月份中无错误地传输数据,建议使用25-35 dBm之间的传输功率,以实现6-8 Km的最佳传输范围。 FSO通信性能所依赖的内部参数是发散角,波长,传输带宽等。目的是优化这些因素,以实现最大的输出和吞吐量。本文采用接收机侧的PIN和APD光电二极管设计了FSO模型。使用该模型,可以在不同的比特率下针对不同的光束发散和波长估算Q因子。对两种类型的光电二极管的结果进行了比较和分析。

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