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Hop-by-Hop ZF Beamforming for MIMO Full-Duplex Relaying With Co-Channel Interference

机译:具有同频干扰的MIMO全双工中继的逐跳ZF波束成形

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摘要

In this paper, a comprehensive design and analysis of multiple-input multiple-output (MIMO) full-duplex (FD) relaying systems in a multi-cell environment is investigated, where a multi-antenna amplify-and-forward FD relay station serves multiple half-duplex (HD) multi-antenna users. The pivotal obstacles of loopback self-interference (LI) and multiple co-channel interferers (CCI) at the relay and destination when employing FD relaying in cellular networks are addressed. In contrast to the HD relaying mode, the CCI in the FD relaying mode is predicted to double since the uplink and downlink communications are simultaneously scheduled via the same channel. In this paper, the optimal layout of transmit (receive) precoding (decoding) weight vectors which maximizes the overall signal-to-interference-plus-noise ratio is constructed by a suitable optimization problem, and then a closed-form sub-optimal formula based on null space projection is presented. The proposed hop-by-hop rank-1 zero-forcing (ZF) beamforming vectors are based on added ZF constraints used to suppress the LI and CCI channels at the relay and destination, i.e., the source and relay perform transmit ZF beamforming, while the relay and destination employ receive ZF combining. To this end, unified accurate expressions for the outage probability and ergodic capacity are derived in closed form. In addition, simpler tight lower bound formulas for the outage probability and ergodic capacity are presented. Moreover, the asymptotic approximations for outage probability are considered to gain insights into system behavior in terms of the diversity order and array gain. Numerical and simulation results show the accuracy of the presented exact analytical expressions and the tightness of the lower bound expressions. The case of hop-by-hop maximum-ratio transmission/maximal-ratio combining beamforming is included for comparison purposes. Furthermore, our results show that while multi-antenna terminals improve the system performance, the detrimental effect of CCI on FD relaying is clearly seen. Therefore, our findings unveil that MIMO FD relaying could significantly improve the system performance compared to its conventional MIMO HD relaying counterpart.
机译:本文研究了在多小区环境下多输入多输出(MIMO)全双工(FD)中继系统的综合设计和分析,其中多天线放大和转发FD中继站可为该中继站提供服务多个半双工(HD)多天线用户。解决了在蜂窝网络中使用FD中继时,中继和目的地处的环回自干扰(LI)和多个同信道干扰源(CCI)的关键障碍。与HD中继模式相比,由于通过相同的信道同时调度了上行链路和下行链路通信,因此FD中继模式下的CCI预计将翻倍。在本文中,通过适当的优化问题构造使整体信噪比最大化的发射(接收)预编码(解码)权向量的最优布局,然后给出一个封闭形式的次优公式提出了基于零空间投影的方法。提出的逐跳秩1零强制(ZF)波束成形向量基于添加的ZF约束,这些约束用于抑制中继站和目的地的LI和CCI信道,即源和中继执行发射ZF波束成形,而中继和目的地应用接收ZF组合。为此,以封闭形式导出了中断概率和遍历容量的统一准确表达式。此外,提出了更简单的停机概率和遍历容量的下限公式。此外,考虑了中断概率的渐近近似,以根据分集阶数和阵列增益来深入了解系统行为。数值和仿真结果表明了所提出的精确解析表达式的准确性和下界表达式的紧密度。为了比较,包括逐跳最大比率传输/最大比率组合波束形成的情况。此外,我们的结果表明,尽管多天线终端改善了系统性能,但清晰可见CCI对FD中继的有害影响。因此,我们的发现表明,与传统的MIMO HD中继同类产品相比,MIMO FD中继可以显着改善系统性能。

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