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Optimal Amplify-and-Forward Scheme for Parallel Relay Networks with Correlated Relay Noise

机译:具有相关中继噪声的并行中继网络的最佳放大转发方案

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摘要

This paper studies a parallel relay network where the relays employ an amplify-and-forward (AF) relaying scheme and are subjected to individual power constraints. We consider correlated effective relay noise arising from practical scenarios when the relays are exposed to common interferers. Assuming that the noise covariance and the full channel state information are available, we investigate the problem of finding the optimal AF scheme in terms of maximum end-to-end transmission rate. It is shown that the maximization problem can be equivalently transformed to a convex semi-definite program, which can be efficiently solved. Then an upper bound on the maximum achievable AF rate of this network is provided to further evaluate the performance of the optimal AF scheme. It is proved that the upper bound can be asymptotically achieved in two special regimes when the transmit power of the source node or the relays is sufficiently large. Finally, both theoretical and numerical results are given to show that, on average, noise correlation is beneficial to the transmission rate -whether the relays know the noise covariance matrix or not.
机译:本文研究了一种并行中继网络,其中的中继采用放大转发(AF)中继方案,并且受到各个功率限制。当继电器暴露于常见干扰源时,我们会考虑由实际情况引起的相关有效继电器噪声。假设噪声协方差和完整的​​信道状态信息可用,我们研究在最大端到端传输速率方面找到最佳AF方案的问题。结果表明,最大化问题可以等效地转化为凸半定程序,可以有效地解决该问题。然后,提供该网络的最大可达到AF率的上限,以进一步评估最佳AF方案的性能。证明了当源节点或中继的发射功率足够大时,可以在两种特殊情况下渐近地达到上限。最后,理论和数值结果均表明,平均而言,噪声相关性对传输速率有利-中继器是否知道噪声协方差矩阵。

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