基于流量模型的5G蜂窝网络按需小蜂窝开/关的实用评估

G. Tran, Hidekazu Shimodaira, R. Rezagah, K. Sakaguchi, K. Araki
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引用次数: 6

摘要

5G通信网络将为用户和垂直市场带来增强的移动宽带服务,支持上下文相关应用的广泛需求。为了在5G中支持这些应用,除了传统的区域流量容量,网络能源效率也是一个关键因素,因为信息处理的能源消耗也成为运营商的经济问题。为了解决这个问题,我们的项目考虑了基于C-RAN的云协同HetNet架构,该架构可以在小单元之间实现全局资源优化,从而最大化目标函数,例如能源效率。另一方面,基于网络能够以经济高效的方式动态适应变化的动态流量模型对于5G的设计也至关重要。本文基于东京市区的实测数据建立了该交通模型。基于所建立的模型,结合用户关联机制,采用按需激活/停用单元来最大化网络的能量效率,即系统速率除以总消耗能量。数值计算结果表明,与传统同构网络相比,该算法能够有效地抑制小时流量的动态变化,同时提高用户满意度。本文还证实了毫米波小蜂窝HetNet在以bps/W为单位的能量效率方面优于传统微波HetNet。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Practical evaluation of on-demand smallcell ON/OFF based on traffic model for 5G cellular networks
5G communication networks will bring enhanced mobile broadband services to users and vertical markets supporting very wide range requirements from context-dependent applications. To support such applications in 5G, not only the conventional area traffic capacity but network energy efficiency is also a critical factor since energy consumption of information processing is also becoming an economic issue for operators. Dealing with this problem, our project considers a C-RAN based cloud cooperated HetNet architecture which enables global resource optimization among smallcells to maximize objective functions of interest e.g. energy efficiency. On the other hand, a dynamic traffic model based on that the network can dynamically adapt to the variation in a cost-effective way is also crucial for the design of 5G. This paper develops such traffic model based on realistic measurement data in metropolitan Tokyo. Based on the developed model, a on-demand cell activation / deactivation jointly with user association mechanism is applied to maximize the network's energy efficiency defined as the system rate over the total consumed energy. Numerical results show the effectiveness of the proposed algorithm against dynamic variation of hourly traffic while improving users' satisfaction as compared to conventional homogeneous network. The paper also confirms the superiority of mm-wave smallcell HetNet against conventional microwave HetNet in terms of energy efficiency in bps/W.
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