基于BBU开关方案的C-RAN节能

Honggang Guo, Ke Wang, Hong Ji, Victor C. M. Leung
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引用次数: 10

摘要

云无线接入网(C-RAN)是一种新型的移动网络架构,与传统的无线接入网相比,可以降低网络的能耗。在C-RAN中有许多基带单元(BBU)。在业务量小的情况下,所有BBU都处于active状态,导致BBU池能耗过高。BBU开关方案可以关闭部分BBU,节省能源。需要考虑电池的资源利用率,但电池的资源利用率估算是一个具有挑战性的问题,缺乏研究。本文首先提出了一种考虑移动用户设备(MUE)速率需求、MUE数量、远程无线电头(RRH)带宽以及RRH与MUE之间传输功率的BBUs资源利用率估算方案。其次,我们提供了一个合并和移除(CnR)算法来决定BBU何时断开或接通。BBU模块可以将BBU模块的过载和欠载拆卸并合为正常BBU模块或休眠BBU模块。该算法的目标是在不损失服务质量(QoS)的情况下使休眠bbu数量最大化。数值计算结果表明,电池休眠数量达到最大值,电池资源利用率保持正常状态,电池池能耗随业务负载的波动而变化。此外,在BBU Pool节能方面,我们提出的方案优于原有静态方案和相关文献的方案。根据所提供的能耗模型,采用本方案的整个系统能耗也比传统的无线局域网低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy saving in C-RAN based on BBU switching scheme
Cloud radio access network (C-RAN) is a novel mobile network architecture which can reduce energy consumption compare to the traditional RAN. There are lots of baseband units (BBU) in C-RAN. All BBUs are in active mode even when traffic load is light, this brings the problem of high energy consumption in BBU Pool. BBU switching scheme can switch off part of BBUs to save energy. It needs to consider BBUs' resource utilization rate but estimating BBUs' resource utilization rate is a challenging issue and lacks researches. In this paper, firstly we propose a novel scheme to estimate BBUs' resource utilization rate with the consideration of rate requirement of mobile user equipment (MUE), number of MUEs, bandwidth of Remote Radio Head (RRH) and the transmission power between RRH and MUE. Secondly, we provide a combine and remove (CnR) algorithm to decide BBU when to be switched off or to be switched on. It can remove overloaded BBU and underloaded BBU while combine them together and transfer them to normal BBU or sleeping BBU. The algorithm aims to maximize the number of sleeping BBUs without losing of Quality of Service (QoS). Numerical results indicate that the number of sleeping BBUs reaches maximum, BBUs' resource utilization rate keep in normal state and the energy consumption in the BBU Pool varies with the fluctuation of traffic load. In addition, our proposed scheme outperform the primary static scheme and schemes in relevant papers in terms of energy saving in the BBU Pool. The overall system using our scheme also consume less energy compare to the traditional RAN according to the provided energy consumption models.
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