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Energy-efficient 5G cloud RAN with virtual BBU server consolidation and base station sleeping

机译:节能5G云运行虚拟BBU服务器整合和基站睡眠

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Heterogeneous network (HetNet) deployment where macro cells are overlaid by small cells is considered a defacto solution for meeting the ever increasing mobile traffic demand in fifth generation (5G) networks. However, deployment of a large number of small cell base stations (BSs) result in considerable increase in HetNet energy consumption. Cloud radio access networks (C-RAN) has been proposed as an energy-efficient architecture that leverages cloud computing technology where baseband processing is performed in virtual baseband units (vBBU) in the BS cloud. In this paper, we address the energy efficiency (EE) optimization problem in the downlink for two-tier heterogeneous C-RAN (H-CRAN) comprising of macro and pico-cells. At the radio side of H-CRAN, a dynamic pico BS switching OFF algorithm based on a utility function is proposed while maintaining coverage and quality of service (QoS). In the cloud side, heuristic approximation algorithms are proposed including simulated annealing (H-CRAN SA) and genetic algorithm (H-CRAN GA) to minimize energy consumption by reducing the number of BBU servers used through vBBU placement. The proposed scheme is compared with distributed long term evolution advanced (LTE-A) Hetnet system and simulation results show that the proposed H-CRAN SA and H-CRAN GA schemes save 48% and 45% of energy on a daily average, respectively while maintaining the required QoS.
机译:由小单元覆盖宏观小区的异构网络(HetNet)部署被认为是用于满足第五代(5G)网络中不断增长的移动业务需求的脱离式解决方案。然而,大量小小区基站(BSS)的部署导致HetNet能量消耗相当大。已经提出了云无线电接入网络(C-RAN)作为节能架构,其利用云计算技术,其中在BS云中的虚拟基带单元(VBBU)中执行基带处理。在本文中,我们解决了包括宏观和微微细胞的双层异构C-RAN(H-CRAN)的下行链路中的能效(EE)优化问题。在H-CRAN的无线电侧,提出了一种基于实用程序功能的动态PICO BS关闭算法,同时保持服务覆盖和服务质量(QoS)。在云侧,提出了一种启发式逼近算法,包括模拟退火(H-CRAN SA)和遗传算法(H-CRAN GA),以通过减少通过VBBU放置使用的BBU服务器的数量来最小化能量消耗。该提出的方案与分布式长期演进高级(LTE-A)HetNet系统和仿真结果进行了比较,表明,所提出的H-Cran SA和H-Cran GA计划分别在日均节省48%和45%的能量保持所需的QoS。

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