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Considerations for re-designing the cellular infrastructure exploiting software-based networks

机译:利用基于软件的网络重新设计蜂窝基础架构的注意事项

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As demand for wireless mobile connectivity continues to explode, cellular network infrastructure capacity requirements continue to grow. While 5G tries to address capacity requirements at the radio layer, the load on the cellular core network infrastructure (called Enhanced Packet Core (EPC)) stresses the network infrastructure. Our work examines the architecture, protocols of current cellular infrastructures and the workload on the EPC. We study the challenges in dimensioning capacity and review the design alternatives to support the significant scale up desired, even for the near future. We breakdown the workload on the network infrastructure into its components-signaling event transactions; database or lookup transactions and packet processing. We quantitatively show the control plane and data plane load on the various components of the EPC and estimate how future 5G cellular network workloads will scale. This analysis helps us to understand the scalability challenges for future 5G EPC network components. Other efforts to scale the 5G cellular network take a system view where the control plane is separated from the data path and is terminated on a centralized SDN controller. The SDN controller configures the data path on a widely distributed switching infrastructure. Our analysis of the workload informs us on the feasibility of various design alternatives and motivates our efforts to develop our clean-slate approach, called CleanG.
机译:随着对无线移动连接的需求持续激增,蜂窝网络基础设施的容量需求持续增长。虽然5G试图解决无线层的容量需求,但蜂窝核心网络基础架构(称为增强型分组核心(EPC))上的负载给网络基础架构带来了压力。我们的工作研究了当前蜂窝基础设施的体系结构,协议以及EPC上的工作量。我们研究了容量确定方面的挑战,并审查了设计替代方案以支持所需的大规模扩展,甚至在不久的将来。我们将网络基础架构上的工作负载分解成其组件-信令事件事务;数据库或查找事务以及数据包处理。我们定量显示EPC各个组件上的控制平面和数据平面负载,并估计未来5G蜂窝网络工作负载将如何扩展。该分析有助于我们了解未来5G EPC网络组件的可扩展性挑战。扩展5G蜂窝网络的其他工作是在系统视图下进行的,其中控制平面与数据路径分离,并在集中式SDN控制器上终止。 SDN控制器在广泛分布的交换基础架构上配置数据路径。我们对工作量的分析使我们了解了各种设计替代方案的可行性,并激发了我们努力开发名为CleanG的清洁方法。

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