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Understanding the bottlenecks in virtualizing cellular core network functions

机译:了解虚拟化蜂窝核心网络功能的瓶颈

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Network function virtualization (NFV) promises significant cost savings, flexibility and ease of deployment. However, potential challenges in implementing virtualized network elements that can support real-world performance requirements are still an open question. For example, traditional telecom networks have a lot of complex interdependencies that can affect performance. In this paper, we study the potential bottlenecks in virtualizing cellular core network functions. Using a combination of analysis and experimentation, we quantify the impact of software-based EPC elements on various metrics including physical processing, memory, IO, and bandwidth resource requirements. We use production grade, software-based cellular network elements running on general purpose Linux servers, driven by a variety of realistic workloads derived from a realworld cellular network, to examine the combined effects of control and data planes on an LTE enhanced packet core (EPC). In particular, we discover that the SGW handles about 33% of the control plane transactions and is a potential source for performance bottlenecks as a result of the interdependencies between control and data plane processing. Our results indicate that simply replacing existing EPC elements with virtualized equivalents can have severe performance bottlenecks and that virtualized EPC elements need to be carefully designed.
机译:网络功能虚拟化(NFV)有望显着节省成本,提高灵活性并简化部署。但是,在实现可以支持实际性能要求的虚拟化网络元素方面,潜在的挑战仍然是一个悬而未决的问题。例如,传统的电信网络具有许多可能影响性能的复杂相互依赖关系。在本文中,我们研究了虚拟化蜂窝核心网络功能的潜在瓶颈。通过结合分析和实验,我们可以量化基于软件的EPC元素对各种指标的影响,包括物理处理,内存,IO和带宽资源需求。我们使用在通用Linux服务器上运行的,基于软件的生产级,基于软件的蜂窝网络元素,由来自现实世界蜂窝网络的各种实际工作负载驱动,以检查控制和数据平面对LTE增强型分组核心(EPC)的综合影响)。特别是,我们发现SGW处理了约33%的控制平面事务,并且由于控制和数据平面处理之间的相互依赖关系而成为性能瓶颈的潜在来源。我们的结果表明,仅用虚拟化等效项替换现有的EPC元素可能会遇到严重的性能瓶颈,并且虚拟化EPC元素需要仔细设计。

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