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首页> 外文期刊>IEEE Transactions on Communications >Joint Resource Allocation for Linear Precoding in Downlink Massive MIMO Systems
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Joint Resource Allocation for Linear Precoding in Downlink Massive MIMO Systems

机译:下行链路大规模MIMO系统线性预编码的联合资源分配

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We study joint proportional-fair (PF) resource allocation (RA), including user selection, linear precoding design, power optimization, and modulation and coding scheme selection, in a single-cell downlink massive MIMO (m-MIMO) system over consecutive time-slots when taking per-antenna power constraints (PAPCs) into account. We formulate the general PF joint RA optimization problem as a weighted sum-rate maximization problem at each time-slot and develop a solution technique to obtain a quasi-optimal feasible solution via the introduction of auxiliary variables and a carefully chosen approximation of the spectral-efficiency function. To obtain results for larger settings (i.e., larger number of antennas and users), we propose an approximation to the general problem that yields quasi-optimal feasible solutions. Moreover, we consider state-of-the-art linear precoding techniques and propose a general heuristic RA scheme that takes PAPCs into account. Numerical results show that PAPCs have significant impact on performance even for a very large number of antennas, and that the best existing linear precoding technique, RZFT (regularized zero-forcing transmission) performs very well when RA is performed carefully as long as the PAPCs are not tight. However, RZFT is far from optimal under tight PAPCs, which highlights the need for practical PAPC-aware precoding techniques in this regime.
机译:我们在连续时间内,研究了联合比例公平(PF)资源分配(PF)资源分配(RA),包括用户选择,线性预编码设计,功率优化和调制和编码方案选择,在单个小区下行链路大量MIMO(M-MIMO)系统中考虑每天天线功率约束(PAPC)时的光盘。我们将一般PF关节RA优化问题作为每个时隙的加权和速率最大化问题,并通过引入辅助变量和光谱的仔细选择近似来开发解决方案技术以获得准优选可行解决方案。效率功能。为了获得更大设置的结果(即,更大数量的天线和用户),我们提出了对产生准优选可行解决方案的一般问题的近似值。此外,我们考虑最先进的线性预编码技术,并提出了一种将PAPCS考虑的通用启发式RA计划。数值结果表明,PAPCS即使对于大量的天线也具有显着影响性能,并且当PAPCS仔细执行RA时,RZFT(正则化零强制传输)的最佳现有线性预编码技术,RZFT(正则化零强制传输)也表现得非常好不紧。然而,RZFT在紧张的PAPC下远非最佳,这突出了在此制度中对实用PAPC感知预编码技术的需求。

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