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Spectrum Sharing in mmWave Cellular Networks via Cell Association, Coordination, and Beamforming

机译:通过单元关联,协调和波束形成在mmWave蜂窝网络中进行频谱共享

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This paper investigates the extent to which spectrum sharing in millimeter-wave (mmWave) networks with multiple cellular operators is a viable alternative to traditional dedicated spectrum allocation. Specifically, we develop a general mathematical framework to characterize the performance gain that can be obtained when spectrum sharing is used, as a function of the underlying beamforming, operator coordination, bandwidth, and infrastructure sharing scenarios. The framework is based on joint beamforming and cell association optimization, with the objective of maximizing the long-term throughput of the users. Our asymptotic and non-asymptotic performance analyses reveal five key points: 1) spectrum sharing with light on-demand intra- and inter-operator coordination is feasible, especially at higher mmWave frequencies (for example, 73 GHz); 2) directional communications at the user equipment substantially alleviate the potential disadvantages of spectrum sharing (such as higher multiuser interference); 3) large numbers of antenna elements can reduce the need for coordination and simplify the implementation of spectrum sharing; 4) while inter-operator coordination can be neglected in the large-antenna regime, intra-operator coordination can still bring gains by balancing the network load; and 5) critical control signals among base stations, operators, and user equipment should be protected from the adverse effects of spectrum sharing, for example by means of exclusive resource allocation. The results of this paper, and their extensions obtained by relaxing some ideal assumptions, can provide important insights for future standardization and spectrum policy.
机译:本文研究了与多个蜂窝运营商共享的毫米波(mmWave)网络中的频谱在多大程度上可以替代传统的专用频谱分配。具体而言,我们开发了一个通用的数学框架来表征使用频谱共享时可获得的性能增益,该性能增益是基础波束形成,运营商协调,带宽和基础架构共享方案的函数。该框架基于联合波束成形和小区关联优化,目的是最大化用户的长期吞吐量。我们的渐近和非渐近性能分析揭示了五个关键点:1)可以按需在运营商内部和运营商之间进行协调以实现频谱共享,尤其是在较高的毫米波频率下(例如73 GHz); 2)用户设备上的定向通信实质上减轻了频谱共享的潜在缺点(例如更高的多用户干扰); 3)大量天线元件可以减少协调的需要并简化频谱共享的实现; 4)虽然在大天线情况下可以忽略运营商之间的协调,但运营商内部的协调仍可以通过平衡网络负载来带来收益; 5)应保护基站,运营商和用户设备之间的关键控制信号免受频谱共享的不利影响,例如,通过专有资源分配的方式。本文的结果以及通过放宽一些理想假设而获得的扩展,可以为未来的标准化和频谱政策提供重要的见解。

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