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Hybrid-Beamforming-Based Millimeter-Wave Cellular Network Optimization

机译:基于混合波束形成的毫米波蜂窝网络优化

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Massive MIMO and millimeter-wave communication (mmWave) have recently emerged as two key technologies for building 5G wireless networks and beyond. To reconcile the conflict between the large antenna arrays and the limited amount of radio-frequency (RF) chains in mmWave systems, the so-called hybrid beamforming becomes a promising solution and has received a great deal of attention in recent years. However, existing research on hybrid beamforming focused mostly on the physical layer or signal processing aspects. So far, there is a lack of theoretical understanding of how hybrid beamforming could affect mmWave network optimization. In this paper, we consider the impacts of hybrid beamforming on utility-optimality and queuing delay in mmWave cellular network optimization. Our contributions in this paper are three-fold: i) we develop a joint hybrid beamforming and congestion control algorithmic framework for mmWave network utility maximization; ii) we reveal a pseudoconvexity structure in the hybrid beamforming scheduling problem, which leads to simplified analog beamforming protocol design; and iii) we theoretically characterize the scalings of utility-optimality and delay with respect to channel state information (CSI) accuracy in digital beamforming.
机译:巨大的MIMO和毫米波通信(MMWAVE)最近被出现为构建5G无线网络及以后的两个关键技术。为了在MM波系统中的大天线阵列和有限的射频(RF)链中调整冲突,所谓的混合波束形成成为一个有希望的解决方案,并且近年来接受了大量的关注。然而,关于混合波束形成的现有研究主要集中在物理层或信号处理方面。到目前为止,缺乏对混合波束形成如何影响MMWAVE网络优化的理论理解。在本文中,我们考虑了混合光束形成对毫瓦蜂窝网络优化的效用和排队延迟的影响。本文的贡献是三倍:i)我们开发了用于MMWAVE网络实用程序最大化的联合混合波束形成和拥塞控制算法框架; ii)我们揭示了混合波束形成调度问题中的伪电池结构,这导致简化的模拟波束形成协议设计;和iii)理论上,在数字波束形成中的信道状态信息(CSI)精度方面,理论上表征了公用事业最优性和延迟的延迟。

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