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Relaying energy allocation in training-based amplify and forward relay communications

机译:基于训练的放大和转发中继通信中的中继能量分配

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We consider relay-assisted communication in a training-based transmission scheme. Each transmission block consists of a training phase and a data transmission phase. The relay node employs the amplify-and-forward protocol during all transmissions. We focus on the relay signaling design and investigate the benefit of allowing for different relaying power during the training phase and the data transmission phase. Specifically, the relaying energy allocation between the two phases is optimized for maximizing the average received signal-to-noise ratio at the destination node. We study this optimization problem for both single-antenna relay and multi-antenna relay and derive a simple closed-form relaying energy allocation strategy that achieves near-optimal performance. This closed-form strategy depends only on the length of the data transmission phase but not on other system parameters such as the relaying energy budget, the number of antennas at the relay, and the distances between the source, relay and destination nodes.
机译:我们考虑基于训练的传输方案中的中继辅助通信。每个传输块包括训练阶段和数据传输阶段。中继节点在所有传输期间均采用放大转发协议。我们专注于中继信令设计,并研究在训练阶段和数据传输阶段允许使用不同中继功率的好处。具体而言,优化了两相之间的中继能量分配,以最大化目标节点处的平均接收信噪比。我们研究了针对单天线中继和多天线中继的这一优化问题,并推导了一种实现接近最佳性能的简单闭合形式中继能量分配策略。这种封闭形式的策略仅取决于数据传输阶段的长度,而不取决于其他系统参数,例如中继能量预算,中继站天线的数量以及源,中继站和目标节点之间的距离。

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