首页> 外文会议>Irish Signals and Systems Conference >A Comparison of the Uplink Performance of Cell-Free Massive MIMO using Three Linear Combining Schemes: Full-Pilot Zero Forcing with Access Point Selection, Matched-Filter and Local-Minimum-Mean-Square Error
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A Comparison of the Uplink Performance of Cell-Free Massive MIMO using Three Linear Combining Schemes: Full-Pilot Zero Forcing with Access Point Selection, Matched-Filter and Local-Minimum-Mean-Square Error

机译:使用三种线性组合方案的无小区大规模MIMO上行链路性能的比较:带接入点选择的全导频迫零,匹配滤波器和局部最小均方误差

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In this paper, three types of linear receiver for the uplink of cell-free massive multiple-input-multiple-output (MIMO) will be studied to gain a clear comparison and understanding of their performance. In a cell-free massive MIMO system, a large number of randomly distributed access points (APs) cooperate to serve a much smaller number of users in the same time-frequency resource. The three receivers of interest are matched-filter (MF) combining, full-pilot zero forcing (fpZF) combining and the local-minimum-mean-squared error (L-MMSE) combining. The APs use locally obtained channel state information to perform the combining. Max-min fairness power control is utilised for the MF and fpZF combining to ensure uniformly good service for all users in the system. We note that max-min fairness power control is not required for the L-MMSE combining since the L-MMSE scheme itself can provide the worst served users with the same spectral efficiency as the MF with max-min fairness. In this paper an AP selection scheme is proposed for the fpZF combining. In particular, the proposed AP selection scheme provides users with reasonably good spectral efficiency using a subset of APs rather than all APs serving all users, which proves to increase the overall energy efficiency of the system. The results show that the fpZF consistently outperforms the MF and L-MMSE even while using only a subset of the APs.
机译:在本文中,将研究用于无小区大规模多输入多输出(MIMO)上行链路的三种类型的线性接收机,以便对其性能进行清晰的比较和理解。在无小区大规模MIMO系统中,大量的随机分布的接入点(AP)协作以在相同的时频资源中为数量较少的用户提供服务。感兴趣的三个接收器是匹配滤波器(MF)组合,全导频迫零(fpZF)组合和局部最小均方误差(L-MMSE)组合。 AP使用本地获得的信道状态信息来执行合并。 MF和fpZF结合使用最大-最小公平功率控制,以确保为系统中的所有用户提供统一的优质服务。我们注意到,L-MMSE组合不需要最大-最小公平功率控制,因为L-MMSE方案本身可以为服务最差的用户提供与最大-最大公平的MF相同的频谱效率。本文提出了一种用于fpZF合并的AP选择方案。特别地,提出的AP选择方案使用AP的子集而不是为所有用户服务的所有AP为用户提供合理良好的频谱效率,这被证明增加了系统的整体能量效率。结果表明,即使仅使用一部分AP,fpZF仍始终优于MF和L-MMSE。

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