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Relay Power Allocation in Distributed Space-Time Coded Networks with Channel Statistical Information

机译:具有信道统计信息的分布式时空编码网络中的中继功率分配

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This letter considers two-relay networks with Rician fading channels. It is assumed that the receiver has full channel information while the relays know the channel means and covariances only. To optimize network performance, we combine distributed space-time coding (DSTC) with relay power allocation. For the high signal-to-noise ratio (SNR) regime, we analytically find the relay power allocation that minimizes an upper bound on the pairwise error probability (PEP). Simulation shows that the proposed scheme largely improves network reliability. In some cases, lack of power allocation causes diversity loss.
机译:这封信考虑了带有Rician衰落信道的两中继网络。假设接收机具有完整的信道信息,而中继站仅知道信道均值和协方差。为了优化网络性能,我们将分布式时空编码(DSTC)与中继功率分配相结合。对于高信噪比(SNR)方案,我们通过分析找到了中继功率分配,该功率可以最大程度地减小成对错误概率(PEP)的上限。仿真表明,该方案大大提高了网络的可靠性。在某些情况下,功率分配不足会导致分集损失。

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