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Effective relay selection for lifetime maximization in decode-and-forward networks when only mean channel gain is available at transmitter side

机译:当发射器侧只有平均频道增益时,解码和前进网络中的生存时间最大化的有效继电器选择

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In this paper, for an energy-constrained two-stage selective decode-and-forward (DF) relaying network which employs a Best-Select form of cooperation, we focus on maximizing the minimum node lifetime when only the mean channel state information (CSI) toward the destination is available at each relay node. If only the mean CSI can be exploited, an optimal relay selection strategy for lifetime maximization in an energy-constrained network is not readily available. In this paper, a simple but effective relay-selection strategy is proposed by exploiting only the mean CSI and the residual energy information (REI) at relay nodes. For any given transmit power at each node, the proposed strategy can maximize the minimum node lifetime while achieving fairly stable end-to-end outage performance. A decentralized implementation with minimal overhead is also designed, so that only the local mean CSI and REI is required at each relay node. Both asymptotic performance analyses and realistic simulations verify the advantages of the proposed relay-selection strategy.
机译:在本文中,对于采用最佳选择的合作形式的能量受限的两阶段选择性解码(DF)中继网络,我们专注于仅在仅平均信道状态信息(CSI)时最大化最小节点寿命)在每个中继节点上朝向目的地提供。如果只能利用平均CSI,则在能量受限网络中的终身最大化的最佳中继选择策略不容易获得。在本文中,通过仅利用中继节点的平均CSI和残余能量信息(REI)来提出简单但有效的中继选择策略。对于每个节点处的任何给定的发射功率,所提出的策略可以最大化最小节点寿命,同时实现相当稳定的端到端中断性能。设计具有最小开销的分散实现,因此每个继电器节点仅需要局部平均CSI和REI。渐近性能分析和现实仿真均验证了提出的中继选择策略的优势。

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