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Full-duplex relay selection analysis for decode-and- forward and amplify-and-forward relaying

机译:用于解码转发和放大转发的全双工中继选择分析

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In this paper, we explore the cooperation over a modern wireless communication network, where we promote the communication between a pair of moving nodes, the source and the destination, to exchange information. We assume that fading constraints overrun this environment, so accordingly the direct link between the source and the destination nodes is not considered. Therefore, full-duplex (FD) relays cooperate with the source to send data packets to the destination. In this new generation of networks, the crucial issue for wireless devices is their limited battery capacity that impacts mainly the network lifetime. Note that this constraint becomes as important as when devices forward data to other terminals. Thus, with the aim of keeping a good compromise between the power consumption and the system performance, this paper studies an optimal relay selection to select one best relay to forward data to the destination based on Decode-and-Forward (DF) and Amplify-and-Forward (AF) relaying techniques. We derive the DF and AF outage probability closed form expressions and the AF numerical approximation for the relay selection strategy. For verification, simulation results are presented. We also perform an analysis of asymptotic results in order to evaluate the impact of the power transmission on the system performances.
机译:在本文中,我们探索了在现代无线通信网络上的合作,在该网络中,我们促进了一对移动节点(源和目的地)之间的通信,以交换信息。我们假设衰落约束超出了该环境,因此,不考虑源节点和目标节点之间的直接链接。因此,全双工(FD)中继与源配合将数据包发送到目标。在新一代网络中,无线设备的关键问题是其有限的电池容量,这主要影响网络寿命。注意,该约束与设备将数据转发到其他终端时一样重要。因此,为了在功耗和系统性能之间保持良好的折衷,本文研究了一种最佳中继选择,以基于解码和转发(DF)和Amplify-和转发(AF)中继技术。我们推导出了DF和AF中断概率闭合形式表达式以及用于继电器选择策略的AF数值逼近。为了验证,给出了仿真结果。我们还对渐近结果进行了分析,以评估动力传输对系统性能的影响。

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