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Power Scaling of Full-Duplex Two-Way Massive MIMO Relay Systems With Correlated Antennas and MRC/MRT Processing

机译:具有相关天线和MRC / MRT处理的全双工两路大规模MIMO中继系统的功率缩放

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In this paper, the performance of full-duplex (FD) two-way massive multiple-input multiple-output (MIMO) relay systems is analyzed. One popular linear relaying scheme, i.e., maximum ratio combining/maximum ratio transmission relaying, is particularly investigated. Different from prior analyses, multi-pair of MIMO users and antenna correlation at both the relay and the users are considered. Asymptotic sum-rate under a general case is first derived. Four special power scaling cases are then discussed and the corresponding asymptotic sum-rates are derived in simple forms with clear insights. The analytical results clearly quantify the impacts of self-loop interference, intra-group interference and antenna correlation, and discover the power scaling laws under various cases. It is found that the transmission powers at both the MIMO users and the relay can be scaled down inversely proportional to the number of antennas at the relay while maintaining a desirable sum-rate when the number of antennas at the relay grows large. The FD two-way massive MIMO relay system is finally compared with the half-duplex (HD) counterpart. It is revealed that under two special power scaling cases, the FD system can achieve double sum-rate when compared with the HD system. However, under the other two power scaling cases, self-loop interference and intra-group interference degrade the asymptotic sum-rate and the FD system may perform worse than the HD system. The maximum allowable self-loop interference for the FD system to outperform the HD system is given explicitly. In addition, the impact of antenna correlation at the users and the relay is analyzed. The results show that the antenna correlation at the users has complicate impact on the sum-rate, while the antenna correlation at the relay may not affect the sum-rate under certain power scaling cases.
机译:本文分析了全双工(FD)双向大规模多输入多输出(MIMO)中继系统的性能。特别研究了一种流行的线性中继方案,即最大比率组合/最大比率传输中继。与先前的分析不同,考虑了多对MIMO用户以及中继站和用户处的天线相关性。首先推导一般情况下的渐近求和率。然后讨论了四种特殊的功率缩放情况,并以简单的形式得出了清晰的见解,得出了相应的渐近和率。分析结果清楚地量化了自环干扰,组内干扰和天线相关性的影响,并发现了各种情况下的功率缩放定律。已经发现,当中继器上的天线数量增加时,在保持理想合计速率的同时,可以与中继器上的天线数量成反比地缩小MIMO用户和中继器的发射功率。最终,将FD两路大规模MIMO中继系统与半双工(HD)对应系统进行了比较。结果表明,在两种特殊的功率缩放情况下,FD系统与HD系统相比可以实现两倍的总和。但是,在其他两种功率缩放情况下,自环干扰和组内干扰会降低渐近和率,并且FD系统的性能可能会比HD系统差。明确给出了FD系统优于HD系统的最大允许自环干扰。此外,分析了天线相关性对用户和中继的影响。结果表明,在某些功率缩放情况下,用户处的天线相关性对求和率具有复杂的影响,而中继站处的天线相关性可能不会影响求和率。

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