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Cooperative Buffer-Aided Relaying Using Full-Duplex Relays With Flow Control

机译:使用带流量控制的全双工继电器的协作式缓冲辅助继电器

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摘要

In this paper, we investigate buffer-aided cooperative relaying schemes using full-duplex (FD) relay nodes with flow control. We show that incorporating various transmission options combined with proper successive interference cancellation can better exploit the opportunism of fading channels, leading to improved achievable rates. We analytically derive the optimal policy for node selection and link scheduling. To deal with the delay incurred at relay nodes, we propose flow control using a threshold-based policy on relays' queues. For performance analysis, we develop a novel technique to derive a delay estimate of the controlled queues with general arrival and service statistics. Numerical results show that the proposed scheme achieves higher throughputs than conventional relaying schemes without FD relaying, and that the proposed estimate closely approximates the actual delay. For the delay-constrained case, our scheme is shown to achieve an improved tradeoff between throughput and delay.
机译:在本文中,我们研究了使用带流控制的全双工(FD)中继节点的缓冲区辅助协作中继方案。我们表明,将各种传输选项与适当的连续干扰消除相结合可以更好地利用衰落信道的机会,从而提高可达到的速率。我们通过分析得出用于节点选择和链路调度的最佳策略。为了处理中继节点上引起的延迟,我们建议在中继队列上使用基于阈值的策略进行流控制。为了进行性能分析,我们开发了一种新颖的技术来通过常规到达和服务统计信息来导出受控队列的延迟估计。数值结果表明,与没有FD中继的传统中继方案相比,该方案实现了更高的吞吐量,并且所提出的估计值非常接近实际延迟。对于延迟受限的情况,我们的方案显示出在吞吐量和延迟之间实现了折衷的改进。

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