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Managing Chains of Application Functions Over Multi-Technology Edge Networks

机译:在多技术边缘网络管理应用程序功能链

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Next-generation networks are expected to provide higher data rates and ultra-low latency in support of demanding applications, such as virtual and augmented reality, robots and drones, etc. To meet these stringent requirements of applications, edge computing constitutes a central piece of the solution architecture wherein functional components of an application can be deployed over the edge network to reduce bandwidth demand over the core network while providing ultra-low latency communication to users. In this article, we provide solutions to resource orchestration and management for applications over a virtualized client-edge-server infrastructure. We investigate the problem of optimal placement of pipelines of application functions (virtual service chains) and the steering of traffic through them, over a multi-technology edge network model consisting of both wired and wireless millimeter-wave (mmWave) links. This problem is NP-hard. We provide a comprehensive "microscopic" binary integer program to model the system, along with a heuristic that is one order of magnitude faster than optimally solving the problem. Extensive evaluations demonstrate the benefits of orchestrating virtual service chains (by distributing them over the edge network) compared to a baseline "middlebox" approach in terms of overall admissible virtual capacity. Moreover, we observe significant gains when deploying a small number of mmWave links that complement the Wire physical infrastructure in high node density networks.
机译:预计下一代网络将提供更高的数据速率和超低延迟,以支持苛刻的应用,例如虚拟和增强现实,机器人和无人机等,以满足这些严格的应用要求,边缘计算构成了一个中央部件解决方案架构,其中应用程序的功能组件可以在边缘网络上部署,以降低对核心网络的带宽需求,同时向用户提供超低延迟通信。在本文中,我们为虚拟化客户端 - 边缘服务器基础架构提供资源编排和管理的解决方案。我们调查应用功能(虚拟服务链)管道最佳位置的问题,以及通过它们的多技术边缘网络模型以及由有线和无线毫米波(MMWAVE)链路组成的多技术边缘网络模型。这个问题是np-clyp。我们提供了一个全面的“微观”二进制整数程序来建模系统,以及一个比最佳解决问题的速度快一阶的启发式。与基线“中间盒”方法在整体可接受的虚拟容量方面,广泛的评估表明了协调虚拟服务链(通过在边缘网络上分发)的益处。此外,在部署在高节点密度网络中补充电线物理基础架构的少量MMWAVE链路时,我们会观察大量收益。

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