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All-Digital Massive MIMO Uplink and Downlink Rates under a Fronthaul Constraint

机译:前传约束下的全数字大规模MIMO上行链路和下行链路速率

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摘要

We characterize the rate achievable in a bidirectional quasi-static link where several user equipments communicate with a massive multiple-input multiple-output base station (BS). In the considered setup, the BS operates in full-digital mode, the physical size of the antenna array is limited, and there exists a rate constraint on the fronthaul interface connecting the (possibly remote) radio head to the digital baseband processing unit. Our analysis enables us to determine the optimal resolution of the analog-to- digital and digital-to-analog converters as well as the optimal number of active antenna elements to be used in order to maximize the transmission rate on the bidirectional link, for a given constraint on the outage probability and on the fronthaul rate. We investigate both the case in which perfect channel-state information is available, and the case in which channel-state information is acquired through pilot transmission, and is, hence, imperfect. For the second case, we present a novel rate expression that relies on the generalized mutual-information framework.
机译:我们描述了双向准静态链路中可实现的速率,其中几个用户设备与大型多输入多输出基站(BS)通信。在所考虑的设置中,BS以全数字模式操作,天线阵列的物理尺寸受到限制,并且在将(可能是远程的)无线头连接到数字基带处理单元的前传接口上存在速率限制。我们的分析使我们能够确定模数转换器和数模转换器的最佳分辨率,以及为了最大程度地提高双向链路上的传输速率而使用的有源天线元件的最佳数量。给断电概率和前传率的约束。我们研究了可获得完美信道状态信息的情况以及通过导频传输获取信道状态信息的情况,因此这两种方法都是不完善的。对于第二种情况,我们提出了一种新颖的汇率表达,它依赖于广义的互信息框架。

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