Binary Power Optimality for Two Link Full-Duplex Network

Shalanika Dayarathna, R. Senanayake, J. Evans
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引用次数: 1

Abstract

In this paper, we analyse the optimality of binary power allocation in a network that includes full-duplex communication links. Considering a network with four communicating nodes, two of them operating in half-duplex mode and the other two in full-duplex mode, we prove that binary power allocation is optimum for the full-duplex nodes when maximizing the sum rate. We also prove that, for half-duplex nodes binary power allocation is not optimum in general. However, for the two special cases, 1) the low signal-to-noise-plus-interference (SINR) regime and, 2) the approximation by the arithmetic mean-geometric mean inequality, binary power allocation is optimum for the approximated sum rate even for the half-duplex nodes. We further analyse a third special case using a symmetric network for which the optimum power allocation is binary, under a sufficient condition. Numerical examples are included to illustrate the accuracy of the results.
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双链路全双工网络的二进制功率最优性
本文分析了包含全双工通信链路的网络中二进制功率分配的最优性。考虑一个具有四个通信节点的网络,其中两个工作在半双工模式下,另外两个工作在全双工模式下,我们证明了当和速率最大时,全双工节点的二进制功率分配是最优的。我们还证明了对于半双工节点,二进制功率分配通常不是最优的。然而,对于两种特殊情况,1)低信噪比加干扰(SINR)制度,2)由算术平均-几何平均不等式近似,二进制功率分配是最优的近似和速率,即使是半双工节点。在充分条件下,我们进一步分析了对称网络的第三种特殊情况,其中最优功率分配是二进制的。数值算例说明了计算结果的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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