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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Performance Analysis of DF Cooperative Diversity System With OSTBC Over Spatially Correlated Nakagami-$m$ Fading Channels
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Performance Analysis of DF Cooperative Diversity System With OSTBC Over Spatially Correlated Nakagami-$m$ Fading Channels

机译:带有空间相关性的Nakagami- $ m $衰落信道上带有OSTBC的DF合作分集系统的性能分析

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In this paper, we investigate the performance of a cooperative decode-and-forward (DF) multiple-input–multiple-output (MIMO) relaying system with orthogonal space–time block code (OSTBC) transmissions over spatially correlated Nakagami-$m$ fading channels for integer values of $m$. We consider both the opportunistic maximal-ratio combining (O-MRC) and $lambda$-MRC receivers at the destination. For the former MRC, we give the closed-form expression for the cumulative distribution function (cdf) of the instantaneous end-to-end signal-to-noise ratio (SNR); relying on this, the exact analytical and asymptotic expressions are also derived for outage probability (OP) and symbol error rate (SER), whereas for the latter MRC, the closed-form expressions are derived for the exact and asymptotic bit error rate (BER) of binary phase-shift keying (BPSK) signals. The optimal value of $lambda$ that minimizes the BER is also provided by using Newton's method. It is shown that O-MRC outperforms $lambda$-MRC since the former MRC takes the relay decoding results into account. For $lambda$-MRC, the optimal $lambda$ decreases with the increase in the SNR and spatial correlation since increasing the SNR and spatial correlation could increase the confidence of the source–destination link and decrease the confidence of the source–relay link, respectively.
机译:在本文中,我们研究了空间相关的Nakagami- $ m $上具有正交空时分组码(OSTBC)传输的协作解码和转发(DF)多输入多输出(MIMO)中继系统的性能衰落通道以获取$ m $的整数值。我们同时考虑了目的地的机会最大比合并(O-MRC)和$ lambda $ -MRC接收器。对于前MRC,我们给出瞬时端对端信噪比(SNR)的累积分布函数(cdf)的闭式表达式;基于此,还可以得出中断概率(OP)和符号错误率(SER)的精确解析表达式和渐近表达式,而对于后者的MRC,则可以得出精确和渐进式误码率(BER)的闭式表达式。二进制相移键控(BPSK)信号)。通过使用牛顿方法还提供了使BER最小的$ lambda $的最优值。结果表明,O-MRC优于$ lambda $ -MRC,因为前MRC考虑了中继解码结果。对于$ lambda $ -MRC,最优lambda $随SNR和空间相关性的增加而减小,因为提高SNR和空间相关性可能会增加源-目标链接的置信度,并降低源-中继链接的置信度,分别。

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