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Generalized Virtual Full-Duplex Relaying Protocol Based on Buffer-Aided Half-Duplex Relay Nodes

机译:基于缓冲区辅助半双工中继节点的通用虚拟全双工中继协议

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In this paper, we propose a novel full-duplex relaying protocol that relies on half-duplex relay nodes with data buffers. The proposed protocol doubles the transmission rate compared to the conventional half- duplex relaying protocol. In the proposed scheme, multiple relay nodes receive a source packet, while a single relay node transmits a buffered packet to the destination node at the same time slot. Specifically, our protocol exploits the multiple source-to-relay (SR) broadcast links rather than the single SR unicast link of the conventional buffer-aided full-duplex protocol, and hence provides an additional design degree of freedom. We also derive the theoretical bounds of the outage probability and average packet delay based on the Markov chain model. Our numerical results demonstrate that the proposed full-duplex protocol is capable of attaining a lower outage probability than that of the previous full-duplex max-max relay selection scheme, and the lower outage probability is achieved without imposing any additional cost.
机译:在本文中,我们提出了一种新的全双工中继协议,其依赖于具有数据缓冲器的半双工继电器节点。与传统的半双工中继协议相比,所提出的协议使传输速率加倍。在所提出的方案中,多个继电器节点接收源分组,而单个中继节点在同一时隙中将缓冲的分组发送到目的节点。具体地,我们的协议利用传统缓冲辅助全双工协议的多个源到继电器(SR)广播链路而不是单个SR单播链路,因此提供了额外的自由设计程度。我们还基于Markov链模型获得了停电概率和平均数据包延迟的理论界。我们的数值结果表明,所提出的全双工协议能够实现比以前的全双工MAX-MAX中继选择方案更低的停电概率,并且在不施加任何额外成本的情况下实现降低的停电概率。

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