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Average power allocation based sum-rate optimization in massive MIMO systems

机译:大规模MIMO系统中基于平均功率分配的总速率优化

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摘要

This paper exploits variations in the average channel gains in multi-cell multi-user massive multiple input multiple output (MIMO) systems. An average transmit power-control-based sum-rate optimization scheme is presented for the uplink of the system. The matched filtering (MF) and the zero forcing (ZF) processors are considered with perfect and imperfect channel state information at receiver (CSIR) under frequency flat Rayleigh fading channel. An average power-control-based system model is constructed for analyzing the sum-rate and formulating an optimization problem. A discrete level combinatorial optimization is performed for MF and ZF sum-rate under perfect and imperfect CSIR. The numerical results show a significant improvement in the sum-rate and power consumption. A low complexity algorithm for numerical optimization of the sum-rate is proposed. The performance of algorithm is quantified with different scenarios including different number of users, macro cells, and micro cells with low and high inter-cell interference powers. The evaluation results show that the improvement in sum-rate and energy efficiency increases with inter-cell interference power and the number of MTs.
机译:本文利用多小区多用户大规模多输入多输出(MIMO)系统中平均信道增益的变化。针对系统的上行链路,提出了一种基于平均发射功率控制的总速率优化方案。在频率平坦的瑞利衰落信道下,在接收器(CSIR)处使用匹配和不完美的信道状态信息来考虑匹配的滤波(MF)和迫零(ZF)处理器。构建了基于平均功率控制的系统模型,用于分析和率并提出优化问题。在完美和不完美的CSIR下,对MF和ZF的总速率执行离散级组合优化。数值结果表明总速率和功耗得到了显着改善。提出了一种用于求和率数值优化的低复杂度算法。算法的性能通过不同的场景进行量化,其中包括不同数量的用户,宏小区以及具有低和高小区间干扰功率的微小区。评估结果表明,总速率和能效的提高随着小区间干扰功率和MT数量的增加而增加。

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