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Optimal Cross-Layer Design Based on Source Adaptive Transmission in Cooperative AF Communication System

机译:自适应AF通信系统中基于源自适应传输的最优跨层设计

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The paper investigates an optimal scheme on cross-layer design which combines adaptive modulation (AM), cooperative diversity at physical layer and the automatic repeat request (ARQ) protocol at data link layer to improve Spectral efficiency in cooperative amplify and forward (CAF) wireless network. We obtain probability density function (pdf) at destination node of the proposed system by using moment generating function (MGF), adjust signal to noise ratio (SNR) threshold based on average packet error rate of each mode, to derive Spectral efficiency for CAF system over both independent and identically distributed (i.i.d.) and non-i.i.d. Rayleigh fading environments. The numerical analysis shows that, compared with the previous scheme, the overall Spectral efficiency of the proposed scheme has been improved, especially as retransmission times increases. Under certain packet loss rate, we further search the maximum Spectral efficiency and the corresponding optimal number of retransmission in a region of maximum retransmission times.
机译:本文研究了一种跨层设计的最佳方案,该方案结合了自适应调制(AM),物理层的协作分集和数据链路层的自动重传请求(ARQ)协议,以提高协作放大和转发(CAF)无线中的频谱效率网络。我们通过使用矩生成函数(MGF)在提出的系统的目标节点处获得概率密度函数(pdf),根据每种模式的平均误包率调整信噪比(SNR)阈值,以得出CAF系统的频谱效率在独立且相同分布的(iid)和非iid上瑞利衰落环境。数值分析表明,与以前的方案相比,该方案的整体频谱效率得到了改善,尤其是随着重传时间的增加。在一定丢包率的情况下,我们进一步在最大重传次数的区域内搜索最大频谱效率和相应的最佳重传次数。

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