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Layered Capacity-Based Relay-and-Antenna Joint Selection for MIMO-AF-Multiple-Relay Systems in Correlated Channels

机译:相关通道中的MIMO-AF - 多继电器系统的基于分层容量的继电器和天线接头选择

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摘要

A computationally efficient two-stage greedy capacity maximization (GCM) relay-and-antenna joint selection is proposed for a dual-hop nonregenerative amplify-and-forward (AF) multiple-input multiple-output (MIMO) multiple-relay system with multiple antennas equipped at each node in correlated fading channels. This modified GCM (MGCM) antenna selection strategy selects a subset of antenna pairs from available relays based on the concept of channel capacity maximization subject to an optimal power allocation constraint across the activated antenna pairs. In order to reduce system hardware complexity, antenna selection schemes are performed at the destination node as well. Finally, simulations are conducted to compare the channel capacity of the proposed two-layered antenna selection technique with other existing antenna selection algorithms for half-duplex AF-MIMO multiple-relay systems.
机译:提出了一种计算有效的两阶段贪婪容量最大化(GCM)继电器和天线接头选择,用于双跳非重新加入扩增和向前(AF)多输入多输出(MIMO)多继电器系统,具有多个在相关渐变通道中的每个节点上配备的天线。该修改的GCM(MGCM)天线选择策略根据激活的天线对的最佳功率分配约束,从可用的中继选择来自可用继电器的天线对的子集。为了降低系统硬件复杂性,也在目的节点处执行天线选择方案。最后,进行仿真以比较所提出的两层天线选择技术的信道容量与用于半双工AF-MIMO多继电器系统的其他现有的天线选择算法。

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