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Full-Duplex MIMO Channel with Self-Interference Alignment and Zero Forcing

机译:具有自干扰对准和零强迫的全双工MIMO信道

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One of the purposes of next generation networks is to deliver high data rate with high spectral efficiency. Full duplex wireless network is a promising technique. Here, we investigate the zero forcing (ZF) of full-duplex multiple input multiple output (MIMO) based on antenna configurations to cancel self-interference. Self-interference is the main challenge of full duplex wireless networks. We propose two scenarios i.e. pure ZF and ZF with self-interference alignment. We derive sum rate expression for pure ZF and ZF with self interference alignment and obtain same expression of them. However, ZF with interference alignment has less number of receive antenna than pure ZF. We show that the sum rate increases as the number of antennas increases as well as the power. We show that the outage probability decreases as the number of antennas increases. As the number of antennas increases, channel multiplexes transmission rate and decreases outage.
机译:下一代网络的目的之一是以高频谱效率提供高数据速率。全双工无线网络是一种有前途的技术。在这里,我们研究基于天线配置的全双工多输入多输出(MIMO)的零强迫(ZF),以消除自干扰。自干扰是全双工无线网络的主要挑战。我们提出了两种方案,即纯ZF和具有自干扰对齐的ZF。我们推导了纯ZF和具有自干涉对齐的ZF的求和率表达式,并获得了它们的相同表达式。但是,具有干扰对准功能的ZF的接收天线数量少于纯ZF。我们表明,总速率随着天线数量和功率的增加而增加。我们表明,随着天线数量的增加,中断的可能性会降低。随着天线数量的增加,信道会复用传输速率并减少中断。

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