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首页> 外文期刊>IEEE Transactions on Green Communications and Networking >Power Allocation for an Energy-Efficient Massive MIMO System With Imperfect CSI
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Power Allocation for an Energy-Efficient Massive MIMO System With Imperfect CSI

机译:具有不完美CSI的节能大规模MIMO系统的功率分配

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摘要

Massive multiple-input and multiple-output (MIMO) has been recognized as a core technology for the fifth generation networks due to its huge spectral utilization brought by multiplexing gain and array gain. Most previous works on Massive MIMO systems have focused on the power optimization to maximize the system energy efficiency, in which the ergodic achievable sum-rate is replaced with a lower bound closed-form expression, which can result in suboptimal performance. In this paper, we aim to optimize the power assignment to achieve the maximum energy efficiency for a downlink system of single-cell Massive MIMO based on a tight approximate expression for the achievable sum-rate. Considering two linear precoding strategies at base station, i.e., maximum ratio transmission and zero-forcing, we first derive the corresponding approximate closed-form of the achievable sum-rate under imperfect channel state information. Furthermore, an energy-efficient power allocation scheme is formulated as a non-convex optimization problem. An iterative power allocation algorithm that maximizes the system energy efficiency is developed based on the Lagrangian dual approach. Simulation results demonstrate the tightness of the proposed approximate closed-form expressions, and show that our designed algorithm yields much better energy efficiency performance over the existing algorithms.
机译:由于其通过多路复用增益和阵列增益带来的巨大频谱利用,巨大的多输入和多输出(MIMO)被识别为第五代网络的核心技术。大多数以前的MIMO系统的工作都集中在功率优化上,以最大限度地提高系统能效,其中ergodic可实现的总和率被替换为下限的闭合形式表达,这可能导致次优的性能。在本文中,我们的目标是优化功率分配,以实现单电池大量MIMO的下行链路系统的最大能效,基于可实现的总和率的紧密近似表达。考虑到基站的两个线性预编码策略,即最大比率传输和零强制,我们首先在不完全信道状态信息下导出可实现的总和率的相应近似闭合形式。此外,将节能功率分配方案制定为非凸优化问题。一种迭代功率分配算法,基于拉格朗日双方法开发了最大化系统能效的迭代功率分配算法。仿真结果表明,所提出的近似闭合形式表达的紧密性,并表明我们设计的算法在现有算法上产生了更好的能效性能。

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