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Energy-efficient BS switching-off and cell topology management for macro/femto environments

机译:宏/毫微微环境中的节能BS关闭和小区拓扑管理

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摘要

In the context of ever-increasing wireless data rates, energy consumption could increase fast, with severe consequences on the operator's energy bill, in addition to environmental considerations. Energy-efficient cell breathing and BS switching-off algorithms are an important tool for energy reduction in cellular networks. In this paper, an energy-efficient cell breathing and offloading mechanism in both macrocellular and heterogeneous networks is studied. First, the need for limiting the number of Macro-BSs switched off and the control of cell sizes are analyzed. An approach based on the use of a traffic threshold from a technique previously proposed by our team is applied in order to control the BS switching-off aggressiveness. One reason for limiting this aggressiveness is the trade-off we point out between the existing RAN power consumption and the transmission power in uplink for mobile devices. Then, in the context of macro/femto deployments, the BS switching-off possibilities are extended by means of the extra capacity from an added ferntolayer under regulated control access. We explore the impact of access policies from 3GPP CSGs (Closed Subscriber Groups) on the network performance and how CSG features may be used by operators to set aspects such as pricing policies and QoS provision levels. In this article, our goal is to provide a combined approach of both techniques in a single framework for macro/femto environments. The obtained results are analyzed showing the importance of proper tuning of energy-efficient algorithms in order to guarantee convenient energy savings and maintaining good QoS levels. (C) 2014 Elsevier B.V. All rights reserved.
机译:在无线数据速率不断提高的背景下,除了环境方面的考虑外,能耗还会快速增加,对运营商的能源费用产生严重影响。高效节能的小区呼吸和BS关断算法是减少蜂窝网络能耗的重要工具。本文研究了宏蜂窝网络和异构网络中的一种高效节能的细胞呼吸和卸载机制。首先,分析了限制关闭的宏BS的数量和小区大小控制的需求。为了控制BS的关闭主动性,应用了一种基于使用流量阈值的方法,该阈值来自于我们的团队先前提出的技术。限制这种侵略性的一个原因是我们指出了现有RAN功耗与移动设备上行链路传输功率之间的权衡。然后,在宏/毫微微部署的情况下,借助于在受控控制访问下来自所添加的毫微微层的额外容量,扩展了BS关闭的可能性。我们探索了3GPP CSG(封闭用户组)的访问策略对网络性能的影响,以及运营商如何使用CSG功能来设置诸如定价策略和QoS提供级别之类的方面。在本文中,我们的目标是在宏/毫微微环境的单个框架中提供两种技术的组合方法。对获得的结果进行分析,表明适当调整节能算法的重要性,以确保方便的节能并保持良好的QoS级别。 (C)2014 Elsevier B.V.保留所有权利。

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