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Error Probability Analysis for Dual-Hop Mixed RF-FSO System using CSOC Codes with MLGD Decoding

机译:使用带有MLGD解码的CSOC码的双跳混合RF-FSO系统的错误概率分析

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In this paper, bit error probability of a dual hop amplify-and-forward mixed RF-FSO system with convolutional self orthogonal codes (CSOC) and their majority logic decoding (MLGD) is investigated. The proposed system consists of a source transmitting a coded binary information over RF and FSO links to the destination node through the aid of a relay node. This latter receives the signal through an RF link, amplifies it by a fixed gain, and forwards it to the destination through an FSO channel. We derive the cumulative distribution function (CDF) of the total signal to noise ratio (SNR), and the pairwise error probability (PEP) of the considered system for BPSK modulation in terms of the Meijer G-Function. The PEP expression is used then in conjunction with the probability generating function of CSOC codes for calculating the closed form expression of the bit error probability of MLGD decoding. The derived mathematical expressions are verified by exactly matching Monte-Carlo simulation results.
机译:本文研究了具有卷积自正交码(CSOC)和多数逻辑解码(MLGD)的双跳放大转发混合RF-FSO系统的误码率。所提出的系统包括一个通过中继节点借助RF和FSO链路将编码的二进制信息传输到目标节点的源。后者通过RF链路接收信号,将信号放大固定增益,然后通过FSO信道转发到目的地。我们根据Meijer G函数得出了总信噪比(SNR)的累积分布函数(CDF),以及所考虑的BPSK调制系统的成对错误概率(PEP)。然后,将PEP表达式与CSOC码的概率生成函数结合使用,以计算MLGD解码的误码概率的闭式表达式。通过精确匹配蒙特卡洛模拟结果来验证所推导的数学表达式。

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