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SDN-Managed Provisioning of Named Computing Services in Edge Infrastructures

机译:SDN管理的边缘基础架构中命名计算服务的供应

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Pushed by the challenging demands of fifth generation (5G) use cases and the recent advancements in virtualization technologies, edge network devices are rapidly evolving from simple forwarders to softwarized infrastructures augmented with computing and storage capabilities. Such a trend blurs the distinction between IT and telco domains and paves the way for the integrated management of network and computing resources. In this paper, we focus on the interplay of the Software Defined Networking (SDN) and Named Data Networking (NDN) paradigms as key drivers for the orchestration of computing services in softwarized edge infrastructures. We propose a new framework that brings out the best of the SDN centralized intelligence to take "smart" decisions and inject rules for service allocation (e.g., retrieve input data, execute a function over them), and the best of the adaptive NDN forwarding plane and its native in-network caching to request and deliver services by name. Within the framework, we devise a service allocation strategy that aims at selecting as an executor, among the potential candidates, the one which is able to guarantee the shortest service provisioning delay for each service request, while accounting for the network topology, the links status, and the available computing resources in the edge nodes. Performance evaluations testify to the superiority of our proposal against benchmarking solutions from the literature under different operation settings.
机译:在第五代(5G)用例具有挑战性的需求以及虚拟化技术的最新发展推动下,边缘网络设备正从简单的转发器迅速发展为具有计算和存储功能的软化基础架构。这种趋势模糊了IT和电信领域之间的区别,并为网络和计算资源的集成管理铺平了道路。在本文中,我们专注于软件定义网络(SDN)和命名数据网络(NDN)范式的相互作用,这是软化边缘基础架构中计算服务编排的关键驱动力。我们提出了一个新框架,该框架可以充分利用SDN集中智能的优势,以做出“智能”决策并为服务分配注入规则(例如,检索输入数据,对其执行功能),以及自适应NDN转发平面的优势及其本地网络内缓存,以按名称请求和提供服务。在该框架内,我们设计了一种服务分配策略,该策略旨在在潜在候选者中选择执行者作为执行者,该候选者能够保证每个服务请求的服务提供延迟最短,同时考虑网络拓扑,链接状态以及边缘节点中的可用计算资源。性能评估证明了我们的建议相对于文献在不同操作环境下的基准解决方案的优越性。

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