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首页> 外文期刊>Communications, IEEE Transactions on >Dynamic Resource Allocation in MIMO-OFDMA Systems with Full-Duplex and Hybrid Relaying
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Dynamic Resource Allocation in MIMO-OFDMA Systems with Full-Duplex and Hybrid Relaying

机译:具有全双工和混合中继的MIMO-OFDMA系统中的动态资源分配

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摘要

In this paper, we formulate a joint optimization problem for resource allocation and scheduling in full-duplex multiple-input multiple-output orthogonal frequency division multiple access (MIMO-OFDMA) relaying systems with amplify-and-forward (AF) and decode-and-forward (DF) relaying protocols. Our problem formulation takes into account heterogeneous data rate requirements for delay sensitive and non-delay sensitive users. We also consider a theoretically optimal hybrid relaying scheme as a performance benchmark, which allows a dynamic selection between AF relaying and DF relaying protocols with full-duplex and half-duplex relays. We show that under some mild conditions the optimal transmitter precoding and receiver post-processing matrices jointly diagonalize the MIMO-OFDMA relay channels for all considered relaying protocols transforming the resource allocation and scheduling problem into a scalar optimization problem. Dual decomposition is employed to solve this optimization problem and a distributed iterative resource allocation and scheduling algorithm with closed-form power and subcarrier allocation is derived. Simulation results not only illustrate that the proposed distributed algorithm converges to the optimal solution in a small number of iterations, but also demonstrate the potential performance gains achievable with full-duplex relaying protocols.
机译:在本文中,我们针对具有放大和转发(AF)和解码与解码功能的全双工多输入多输出正交频分多址(MIMO-OFDMA)中继系统中的资源分配和调度制定了一个联合优化问题。前向(DF)中继协议。我们提出的问题考虑了对延迟敏感和非延迟敏感用户的异构数据速率要求。我们还将理论上最佳的混合中继方案作为性能基准,它允许在具有全双工和半双工中继的AF中继和DF中继协议之间进行动态选择。我们表明,在某些温和条件下,针对所有考虑的中继协议,最优的发射机预编码和接收机后处理矩阵共同使MIMO-OFDMA中继信道对角线化,从而将资源分配和调度问题转换为标量优化问题。采用双重分解来解决该优化问题,并推导了具有封闭形式功率和子载波分配的分布式迭代资源分配和调度算法。仿真结果不仅说明了所提出的分布式算法在少量迭代中收敛到最优解,而且还证明了使用全双工中继协议可以实现的潜在性能提升。

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