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A Performance Study of a Hybrid 5G RF/FSO Transmission System

机译:混合5G RF / FSO传输系统的性能研究

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This work presents a study on the performance of a hybrid 5G RF/FSO communication system. Both transmitter and receiver communicate through two paths: the first link operates under Radio-Frequency (RF) technology, assumed to undergo a Weibull fading channel, while the second link operates under Free Space Optical (FSO) technology, subject to Malaga-M turbulence model with the presence of pointing error impairment. Both incoming signals are combined at the receiver side using Maximal Ratio Combining (MRC) technique. We retrieve, in particular, the Moment Generating Function (MGF) of the total Signal-to-Noise Ratio (SNR). Based on that, we present the exact closed-form expression of the Average Symbol Error Rate (ASER) of the considered RF/FSO system for different modulations schemes in terms of the bivariate Fox's H-Function.
机译:这项工作提出了混合动力5G RF / FSO通信系统的性能研究。发射器和接收器均通过两条路径进行通信:第一个链路在射频(RF)技术下运行,假设经过Weibull衰落通道,而第二连杆在自由空间光学(FSO)技术下操作,受到Malaga-M湍流。模型存在指向错误损伤。使用最大比率(MRC)技术在接收器侧组合在接收器侧。我们特别地检索总信噪比(SNR)的片刻产生函数(MGF)。在此基础上,我们介绍了所考虑的RF / FSO系统的平均符号错误率(ASER)的确切闭合形式表达,用于不同的调制方案,在双变量FOX的H函数方面。

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