实现全球多域网络的端到端连接

Esteban Municio, Mert Cevik, P. Ruth, J. Márquez-Barja
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引用次数: 0

摘要

目前5G网络可编程性的趋势表明,需要从节点和边缘一直到云的端到端灵活性。这样的多域场景需要实际的测试平台,在那里可以部署和测试不同的任务卸载算法、调度功能和服务编排技术。虽然这些研究组件中的许多通常可以在小型和孤立的测试台上进行本地探索,但新的5G需求要求具有更广泛和更全球范围的可互操作平台。这些全球平台的目标是,它们能够应对多层分层体系结构,这些体系结构能够面对密集的计算过程和繁重的网络流量负载,同时保持任务执行和数据传输的可靠性和低延迟。在本文中,我们展示了一个世界范围内的尝试,将位于美国、比利时和荷兰的不同的高性能测试设施集成在一起,以便在如此庞大而复杂的体系结构之上进行实验。为了做到这一点,我们描述并部署了一个多域用例,它可以从全局分层的基础结构中获益。最后,我们详细介绍了部署的性能特征,讨论了经验和技术挑战,并展示了我们在构建和测试此类实验用例时获得的经验教训。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Achieving End-to-End Connectivity in Global Multi-Domain Networks
Current trends on 5G network programmability evidence the need for end-to-end flexibility from the node and edge all the way to the cloud. Such multi-domain scenarios require realistic testbeds where different task-offloading algorithms, scheduling functions, and service orchestration techniques can be deployed and tested. While many of these research components can be often explored locally in small and isolated testbeds, new 5G demands are requesting for inter-operable platforms with a wider and a more global scope. The goal for these global platforms is that they can cope with multi-tier hierarchical architectures that are capable to face intense computational processes and heavy network traffic loads, while preserving dependability and keeping a low latency on the task executions and data transmission. In this paper we demonstrate a world-wide attempt to integrate different high-performance testing facilities, located in USA, Belgium, and The Netherlands, to enable experimentation on top of such large and complex architectures. In order to do this, we describe and deploy a multi-domain use case that can benefit from a global hierarchical infrastructure. Finally, we detail the performance characteristics of the deployment, discussing the experiences and technical challenges, and presenting the lessons learned we obtained when building and testing such experimental use case.
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