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Outage Performance of Full-Duplex Multiuser Relay Systems With Rician-Distributed RSI

机译:具有瑞典分布式RSI的全双工多用户中继系统的停电性能

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摘要

A multiuser full-duplex (FD) two-wayrelaying system is considered with decode-and-forward relaying protocol. All nodes are assumed to have FD abilities, and residual self-interference (RSI) at each node is modeled as a Rician-distributed random variable. Based on the availability of channel state information (CSI) at the relay node, different scheduling schemes are adopted and investigated in terms of outage probability. For the blind case when CSI is unavailable, the random scheduling is analyzed. In the presence of CSI, the absolute channel power-based scheduling and normalized channel power-based scheduling schemes are considered. A precise closed-form expression for the outage probability is derived for independent and nonidentically distributed channels. The theoretical results are verified through Monte Carlo simulations.
机译:使用解码和前进的中继协议考虑多用户全双工(FD)双路翻转系统。假设所有节点都具有FD能力,并且每个节点处的剩余自干扰(RSI)被建模为RICIAN分布式随机变量。基于中继节点处的信道状态信息(CSI)的可用性,在中断概率方面采用和研究了不同的调度方案。对于盲情况,当CSI不可用时,分析随机调度。在CSI的存在下,考虑了基于绝对信道功率的调度和归一化信道功率的调度方案。导出用于独立和非线性分布式通道的预算概率的精确闭合表达式。通过蒙特卡罗模拟验证理论结果。

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