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Resource allocation for MIMO orthogonal relay channels with finite-rate feedback

机译:具有有限速率反馈的MIMO正交中继信道的资源分配

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Multiple antennas and relay can improve spectral efficiency of a network. Half duplex relay channels employing decode-and-forward and total power constraint are considered in this work. The resource includes power and time for the receive and transmit stages of the relay. Resource allocation algorithm is designed in order to maximize an achievable rate. The source and the relay nodes are assumed to have partial channel state information (CSI) obtained through finite-rate feedback from relay and/or destination. The full-blown problem is stated and the result of a special case of orthogonal transmission is presented. The transmitters use the simple power on/off precoding with constant number of on-beams while the precoding matrices are chosen according to quantization on Grassmann manifolds. An earlier analytical result on finite rate feedback is employed in the resource allocation algorithm. The complicated expressions of the achievable rates and the non-convexity of the problem make the optimal resource allocations hard to obtain and analyze. Iterative and near optimal resource allocation algorithm is presented. Numerical results are provided to show the benefits of finiterate feedback by comparison of the achievable rates of the relay channel, two-hop transmission and the direct transmission.
机译:多个天线和中继可以提高网络的频谱效率。在这项工作中考虑了采用解码转发和总功率约束的半双工中继信道。该资源包括中继器接收和发送阶段的功率和时间。设计资源分配算法是为了使可达到的速率最大化。假定源节点和中继节点具有部分信道状态信息(CSI),该信道状态信息是通过从中继和/或目标接收的有限速率反馈获得的。陈述了一个完整的问题,并给出了正交传输特殊情况的结果。发射机使用简单的电源开/关预编码和恒定数量的波束,同时根据格拉斯曼流形上的量化选择预编码矩阵。资源分配算法采用了较早的有限速率反馈分析结果。可达到的比率的复杂表达和问题的非凸性使得难以获得和分析最优资源分配。提出了一种迭代且接近最优的资源分配算法。通过比较中继信道,两跳传输和直接传输的可达到速率,提供了数值结果以显示有限速率反馈的好处。

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