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Throughput maximization for buffer-aided hybrid half-/full-duplex relaying with self-interference

机译:具有自干扰的缓冲区辅助混合半/全双工中继的吞吐量最大化

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摘要

In this work, we consider a two-hop cooperative setting where a source communicates with a destination through an intermediate relay node with a buffer. Unlike the existing body of work on buffer-aided half-duplex relaying, we consider a hybrid half-/full-duplex relaying scenario with loopback interference in the full-duplex mode. Depending on the channel outage and buffer states that are assumed available at the transmitters, the source and relay may either transmit simultaneously or revert to orthogonal transmission. Specifically, a joint source/relay scheduling and relaying mode selection mechanism is proposed to maximize the end-to-end throughput. The throughput maximization problem is converted to a linear program where the exact global optimal solution is efficiently obtained via standard convex/linear numerical optimization tools. Finally, the theoretical findings are corroborated with event-based simulations to provide the necessary performance validation.
机译:在这项工作中,我们考虑了两跳协作设置,其中源通过带有缓冲区的中间中继节点与目标进行通信。与现有的缓冲区辅助半双工中继工作不同,我们考虑了在全双工模式下具有环回干扰的混合半/全双工中继方案。根据假定在发射机处可用的信道中断和缓冲区状态,源和中继可以同时进行传输,也可以恢复为正交传输。具体来说,提出了一种联合源/中继调度和中继模式选择机制,以最大化端到端吞吐量。吞吐量最大化问题被转换为线性程序,在该程序中,可以通过标准凸/线性数值优化工具有效地获取确切的全局最优解。最后,理论发现与基于事件的模拟得到了证实,以提供必要的性能验证。

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