Virtually Full-duplex Cell-Free Massive MIMO with Access Point Mode Assignment

M. Mohammadi, Thanh Tung Vu, B. N. Beni, H. Ngo, M. Matthaiou
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引用次数: 6

Abstract

We consider a cell-free massive multiple-input multiple-output (MIMO) network utilizing a virtually full-duplex (vFD) mode, where access points (APs) with a downlink (DL) mode and those with an uplink (UL) mode simultaneously serve DL and UL users (UEs). In order to maximize the sum spectral efficiency (SE) of the DL and UL transmissions, we formulate a mixed-integer optimization problem to jointly design the AP mode assignment and power control. This problem is subject to minimum per-UE SE requirements, per-AP power control, and per-UL UE power constraints. By employing the successive convex approximation technique, we propose an algorithm to obtain a stationary solution of the formulated problem. Numerical results show that the proposed vFD approach can provide a sum SE that is 2.5 and 1.5 times larger than the traditional half-duplex and heuristic baseline schemes, respectively, in terms of 95%-likely sum SE.
几乎全双工无蜂窝大规模MIMO与接入点模式分配
我们考虑了一个使用全双工(vFD)模式的无小区大规模多输入多输出(MIMO)网络,其中具有下行链路(DL)模式的接入点(ap)和具有上行链路(UL)模式的接入点(ap)同时为DL和UL用户(ue)提供服务。为了最大限度地提高DL和UL传输的总频谱效率(SE),我们提出了一个混合整数优化问题来联合设计AP模式分配和功率控制。此问题受每个UE SE最低要求、每个ap功率控制和每个ul UE功率限制的影响。利用连续凸逼近技术,提出了一种求解公式问题的平稳解的算法。数值结果表明,所提出的vFD方法在95%似然和SE方面分别比传统的半双工和启发式基线方案大2.5倍和1.5倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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