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On the performance of full-duplex relaying schemes for point-to-point MIMO with large antenna arrays

机译:具有大型天线阵列的点对点MIMO全双工中继方案的性能

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The performance of full-duplex (FD) decode-and-forward (DF) relaying systems for point-to-point multi-antenna transmission is considered. Three different relaying schemes are investigated: co-located, distributed cooperative and distributed non-cooperative. To mitigate the effects of loop interference (LI) caused by FD operation at the relay, a digital cancellation scheme based on pilot-aided channel estimation is used. Asymptotic analysis shows that all considered systems are inter-pair and LI free when the number of antennas at the source and destination grows without bound while the relay has a finite number of antennas. More careful analysis of the achievable rate reveals, however, that the LI has a significant impact on the performance of finite sized systems. The numerical results illustrate that non-cooperative distributed relaying suffers severely from FD operation under realistic scenarios, while cooperation allows for efficient LI cancellation and improved spectral efficiency over half-duplex (HD) systems. The results also demonstrate that the optimal number of antennas used by a FD relay is only 10%-30% of the size of the array used at the source and destination, while HD relaying benefits from fractions of up to 50%.
机译:考虑了用于点对点多天线传输的全双工(FD)解码转发(DF)中继系统的性能。研究了三种不同的中继方案:共置,分布式协作和分布式非协作。为了减轻中继器上FD操作引起的环路干扰(LI)的影响,使用了基于导频辅助信道估计的数字消除方案。渐近分析表明,当中继站具有有限数量的天线时,当源和目标处的天线数量无限制增长时,所有考虑的系统都是对对且无LI的。然而,对可实现速率的更仔细的分析表明,LI对有限大小系统的性能具有重大影响。数值结果表明,在实际情况下,非协作式分布式中继会严重受FD操作的困扰,而协作可实现有效的LI抵消和半双工(HD)系统上更高的频谱效率。结果还表明,FD中继使用的最佳天线数量仅为源和目标处使用的阵列大小的10 \%-30 \%,而HD中继受益于高达50%的比例。

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