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Downlink Power Control in Massive MIMO Networks with Distributed Antenna Arrays

机译:具有分布式天线阵列的大规模MIMO网络中的下行链路功率控制

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In this paper, we investigate downlink power control in massive multiple-input multiple-output (MIMO) networks with distributed antenna arrays. The base station (BS) in each cell consists of multiple antenna arrays, which are deployed in arbitrary locations within the cell. Due to the spatial separation between antenna arrays, the large-scale propagation effect is different from a user to different antenna arrays in a cell, which makes power control a challenging problem as compared to conventional massive MIMO. We assume that the BS in each cell obtains the channel estimates via uplink pilots. Based on the channel estimates, the BSs perform maximum ratio transmission for the downlink. We then derive a closed-form spectral efficiency (SE) expression, where the channels are subject to correlated fading. Utilizing the derived expression, we propose a max-min power control algorithm to ensure that each user in the network receives a uniform quality of service. Numerical results demonstrate that, for the network considered in this work, optimizing for max-min SE through the max-min power control improves the sum SE of the network as compared to equal power allocation.
机译:在本文中,我们研究了具有分布式天线阵列的大规模多输入多输出(MIMO)网络中的下行链路功率控制。每个小区中的基站(BS)包括多个天线阵列,其部署在小区内​​的任意位置。由于天线阵列之间的空间分离,大规模传播效果与用户中的不同天线阵列不同,与传统的大规模MIMO相比,该电池中的不同天线阵列使功率控制成为具有挑战性的问题。我们假设每个小区中的BS通过上行链路导频获得信道估计。基于信道估计,BSS对下行链路执行最大比率传输。然后,我们推导出闭合谱效率(SE)表达式,其中通道经受相关的衰落。利用派生表达式,我们提出了一个MAX-MIN功率控制算法,以确保网络中的每个用户接收均匀的服务质量。数值结果表明,对于在本作工作中考虑的网络,通过MAX-MIN功率控制优化MAX-MIN SE,与等于电源分配相比,通过MAX-MIN功率控制提高了网络的和。

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