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Dynamic Resource Provisioning for Energy Efficiency in Wireless Access Networks: a Survey and an Outlook

机译:在无线接入网中提高能源效率的动态资源配置:一项调查和展望

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摘要

Traditionally, energy efficiency aspects have been included in the wireless access network design space only in the context of power control aimed at interference mitigation, and for the increase of the terminal battery lifetime. Energy consumption of network components has also, for a long time, not been considered an issue, neither in equipment design, nor in network planning and management. However, in recent years, with the user demand increasing at nearly exponential pace, and margins rapidly shrinking, concerns about energy efficiency have been raised, with the objective to reduce network operational costs (not to mention the environmental issues). Installing more energy- efficient hardware does not seem to fully solve the problem, since wireless access networks are almost invariably (over)provisioned with respect to the peak user demand. This means that efficient resource management schemes, capable of controlling how much of the network infrastructure is actually needed and which parts can be temporarily powered off to save energy, can be extremely effective and provide quite large cost reductions. Considering that most of the energy in wireless access networks is consumed in the radio part, a dynamic provisioning of wireless access network resources is crucial, to achieve energy-efficient operation. The consensus on this approach in the research com- munity has been wide in the last few years, and a large number of solutions was proposed. In this paper, we survey the most important proposals, considering the two most common wireless access technologies, namely cellular and WLAN. Main features of the proposed solutions are analyzed and compared, with an out- look on their applicability in typical network scenarios that also include cooperation between both access technologies. Moreover, we provide an overview of the practical implementation aspects that must be addressed to achieve truly energy-efficient wireless access networks, including current standardization work, and trends in the development of energy-efficient hardware.
机译:传统上,仅在旨在降低干扰的功率控制以及增加终端电池寿命的情况下,才将能效方面包括在无线接入网络设计空间中。长期以来,无论是在设备设计还是在网络规划和管理中,都没有将网络组件的能耗视为一个问题。但是,近年来,随着用户需求以近乎指数级的速度增长,并且利润迅速缩小,人们对能源效率提出了关切,目的是降低网络运营成本(更不用说环境问题了)。安装更高能效的硬件似乎无法完全解决问题,因为相对于高峰用户需求,无线接入网络几乎总是(过度)配置。这意味着能够控制实际需要多少网络基础结构以及哪些部分可以暂时断电以节省能源的有效资源管理方案可以非常有效,并且可以大大降低成本。考虑到无线访问网络中的大多数能量都在无线电部分消耗,因此动态配置无线访问网络资源对于实现节能运行至关重要。在过去的几年中,在研究社区中就这种方法达成了广泛共识,并提出了许多解决方案。在本文中,我们考虑了两种最常见的无线访问技术,即蜂窝和WLAN,对最重要的建议进行了调查。对提出的解决方案的主要特征进行了分析和比较,并展望了它们在典型网络场景中的适用性,其中还包括两种接入技术之间的合作。此外,我们概述了实现真正节能的无线接入网络必须解决的实际实施方面,包括当前的标准化工作以及节能硬件的发展趋势。

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