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Cross-Layer Provision of Future Cellular Networks: A WMMSE-based approach

机译:未来蜂窝网络的跨层提供:基于WMMSE的方法

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摘要

To cope with the growing demand for wireless data and to extend service coverage, future fifth-generation (5G) networks will increasingly rely on the use of low-power nodes to support massive connectivity in a diverse set of applications and services [1]. To this end, virtualized and mass-scale cloud architectures are proposed as promising technologies for 5G in which all the nodes are connected via a backhaul network and managed centrally by such cloud centers. The significant computing power made available by the cloud technologies has enabled the implementation of sophisticated signal processing algorithms, especially by way of parallel processing, for both interference management and network provision. The latter two are among the major signal processing tasks for 5G due to an increased level of frequency sharing, node density, interference, and network congestion. This article outlines several theoretical and practical aspects of joint interference management and network provisioning for future 5G networks. A cross-layer optimization framework is proposed for joint user admission, user-base station (BS) association, power control, user grouping, transceiver design, as well as routing and flow control. We show that many of these cross-layer tasks can be treated in a unified way and implemented in a parallel manner using an efficient algorithmic framework called weighted minimum mean squared error (WMMSE). Some recent developments in this area are highlighted and future research directions are identified.
机译:为了应对对无线数据的不断增长的需求并扩展服务范围,未来的第五代(5G)网络将越来越依赖低功率节点来支持各种应用程序和服务中的大规模连接[1]。为此,虚拟化和大规模云架构被提出作为5G的有希望的技术,其中所有节点都通过回程网络连接并由此类云中心进行集中管理。云技术所提供的强大计算能力使复杂的信号处理算法(尤其是通过并行处理)能够实现干扰管理和网络供应。由于频率共享,节点密度,干扰和网络拥塞程度不断提高,后两者是5G的主要信号处理任务之一。本文概述了针对未来5G网络的联合干扰管理和网络配置的几个理论和实践方面。提出了一种跨层优化框架,用于联合用户准入,用户基站(BS)关联,功率控制,用户分组,收发器设计以及路由和流控制。我们表明,可以使用称为加权最小均方误差(WMMSE)的高效算法框架,以统一的方式处理并以并行方式实现许多这些跨层任务。重点介绍了该领域的一些最新进展,并确定了未来的研究方向。

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