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New era in shared C-RAN and core network: A case study for efficient RRH usage

机译:共享C-RAN和核心网络的新时代:有效使用RRH的案例研究

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Radio Access Network (RAN) sharing and Cloud-RAN (C-RAN) are two major candidates for next generation mobile networks. RAN sharing ensures efficient usage of network equipments among multiple mobile network operators (MNOs) and C-RAN benefits installation, evolution, management and performance improvements. Similarly, Software-Defined Networking (SDN) concept provides many features including hardware abstraction, programmable networking and centralized policy control. One of the main benefits that can be used along with these features is virtualization of RAN and core/backhaul networks to ensure network sharing among MNOs and efficient usage of the network equipments. In this work, we propose SDN-based C-RAN architecture including RAN controller integrated to virtualization controller that is crucial for core/backhaul network sharing towards next generation cellular network. In proposed architecture, eNodeB functions are shifted to the top of C-RAN controller as a consequence of separating baseband units from remote radio heads (RRHs). We further provide RRH assignment based load balancing algorithm that is executed at the top of the controller and allows sharing of RRHs among multiple MNOs. We evaluate its performance using traditional RRH distribution as benchmark and simulation results reveal that our proposed algorithm outperforms traditional distribution in terms of average number of connected user equipments to RRHs.
机译:无线电接入网络(RAN)共享和Cloud-RAN(C-RAN)是下一代移动网络的两个主要候选者。 RAN共享可确保在多个移动网络运营商(MNO)之间有效使用网络设备,而C-RAN则有利于安装,演进,管理和性能改进。同样,软件定义网络(SDN)概念提供了许多功能,包括硬件抽象,可编程网络和集中式策略控制。可以与这些功能一起使用的主要好处之一是RAN和核心/回程网络的虚拟化,以确保MNO之间的网络共享和网络设备的有效使用。在这项工作中,我们提出了基于SDN的C-RAN体系结构,其中包括集成到虚拟化控制器中的RAN控制器,这对于核心/回程网络与下一代蜂窝网络的共享至关重要。在提出的体系结构中,由于将基带单元与远程无线电头端(RRH)分开,eNodeB功能转移到了C-RAN控制器的顶部。我们还提供了基于RRH分配的负载平衡算法,该算法在控制器的顶部执行,并允许在多个MNO之间共享RRH。我们使用传统RRH分布作为基准来评估其性能,仿真结果表明,我们提出的算法在连接到RRH的用户设备的平均数量方面优于传统分布。

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