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Link selection based on switching between full‐duplex and half‐duplex modes

机译:基于全双工和半双工模式的切换的链路选择

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Multiple‐input multiple‐output systems can achieve a full sum rate (SR) via full duplex (FD). However, its performance is degraded by self‐interference (SI) that occurs between the transmitter and receiver at the same node and thus is constrained by error floors. Conversely, half duplex (HD) can avoid the SI albeit at lower spectral efficiency, and the slope of its error curve is determined by the diversity order. In this study, a link selection scheme based on switching between FD and HD is examined as a simple method to improve the bit error rate (BER) performance of FD systems. In the proposed link selection algorithm, either FD or HD is selected based on the received minimum distance and signal‐to‐interference plus noise ratio. Simulation results indicate that the proposed hybrid FD/HD switching system offers significant BER performance improvement when compared with that of the conventional FD and FD based on only the received minimum distance under the same fixed SR. Under relatively sufficient SI cancellation, it is demonstrated to outperform the HD with a diversity advantage in low and medium signal‐to‐noise ratio region.
机译:多输入多输出系统可以通过全双工(FD)来实现完整的总和速率(SR)。然而,它的性能通过在同一节点处的发射机和接收器之间发生的自干扰(SI)来降低,因此由错误地板约束。相反,半双工(HD)可以避免以较低的频谱效率避免SI,并且其误差曲线的斜率由分集顺序确定。在该研究中,研究了基于FD和HD之间切换的链路选择方案作为提高FD系统的误码率(BER)性能的简单方法。在所提出的链路选择算法中,基于接收的最小距离和信号到干扰加噪声比选择FD或HD。模拟结果表明,当仅基于同一固定SR下的接收到的最小距离,所提出的混合动力FD / HD交换系统提供了显着的BER性能改进。在相对足够的SI消除下,证明在低中和中的信噪比区域中具有多样性优势的HD优异。

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