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An Exact Closed-Form Expression for Bit Error Rate of Decode-and-Forward Relaying Using Selection Combining over Rayleigh Fading Channels

机译:使用瑞利衰落信道上的选择组合的解码和转发中继误码率的精确闭式表达式

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摘要

Cooperative transmission is an effective solution to improve the performance of wireless communications over fading channels without the need for physical co-located antenna arrays. In this paper, selection combining is used at the destination instead of maximal ratio combing to optimize the structure of destination and to reduce power consumption in selective decode-and-forward relaying networks. For an arbitrary number of relays, an exact and closed-form expression of the bit error rate (BER) is derived for M-PAM, M-QAM, and M-PSK, respectively, in both independent identically distributed and independent but not identically distributed Rayleigh fading channels. A variety of simulations are performed and show that they match exactly with analytic ones. In addition, our results show that the optimum number of relays depend not only on channel conditions (operating SNRs) but also on modulation schemes which to be used.
机译:协作传输是一种有效的解决方案,可提高衰落信道上无线通信的性能,而无需物理上共处一地的天线阵列。在本文中,选择合并用于目的地,而不是最大比率合并,以优化目的地的结构并减少选择性解码转发中继网络中的功耗。对于任意数量的继电器,分别以独立的相同分布和独立但不相同的方式分别得出M-PAM,M-QAM和M-PSK的精确和闭式误码率(BER)表达式分布式瑞利衰落信道。进行了各种模拟,并显示它们与分析模拟完全匹配。此外,我们的结果表明,中继的最佳数量不仅取决于信道条件(工作SNR),还取决于要使用的调制方案。

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