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Optimal resource allocation for multiple network-coded two-way relay in orthogonal frequency division multiplexing systems

机译:正交频分复用系统中多个网络编码双向中继的最优资源分配

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This paper studies optimal resource allocation for multiple network-coded two-way relay in orthogonal frequency division multiplexing systems. All the two-way relay nodes adopt amplify-and-forward and operate with analog network coding protocol. A joint optimization problem considering power allocation, relay selection, and subcarrier pairing to maximize the sum capacity under individual power constraints at each transmitter or total network power constraint is first formulated. By applying dual method, we provide a unified optimization framework to solve this problem. With this framework, we further propose three low-complexity suboptimal algorithms. The complexity of the proposed optimal resource allocation (ORA) algorithm and three suboptimal algorithms are analyzed, and it is shown that the complexity of ORA is only a polynomial function of the number of subcarriers and relay nodes under both individual and total power constraints. Simulation results demonstrate that the proposed ORA scheme yields substantial performance improvement over a baseline scheme, and suboptimal algorithms can achieve a trade-off between performance and complexity. The results also indicate that with the same total network transmit power, the performance of ORA under total power constraint can outperform that under individual power constraints. Copyright (c) 2012 John Wiley & Sons, Ltd.
机译:本文研究正交频分复用系统中多个网络编码双向中继的最优资源分配。所有的双向中继节点均采用放大转发方式,并采用模拟网络编码协议进行操作。首先提出一个联合优化问题,该问题考虑了功率分配,中继选择和子载波配对,以在每个发射机的单个功率约束下或总网络功率约束下最大化总容量。通过应用对偶方法,我们提供了一个统一的优化框架来解决此问题。在此框架下,我们进一步提出了三种低复杂度次优算法。分析了提出的最优资源分配(ORA)算法和三种次优算法的复杂度,结果表明,在单个功率约束和总功率约束下,ORA的复杂度只是子载波和中继节点数量的多项式函数。仿真结果表明,所提出的ORA方案相对于基线方案具有显着的性能改进,次优算法可以在性能和复杂性之间进行权衡。结果还表明,在总网络发射功率相同的情况下,在总功率约束下,ORA的性能可以优于在单独功率约束下的性能。版权所有(c)2012 John Wiley&Sons,Ltd.

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