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Effectiveness of Segment Routing Technology in Reducing the Bandwidth and Cloud Resources Provisioning Times in Network Function Virtualization Architectures ?

机译:网段路由技术在减少网络功能虚拟化体系结构中的带宽和云资源供应时间方面的有效性?

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Network Function Virtualization is a new technology allowing for a elastic cloud and bandwidth resource allocation. The technology requires an orchestrator whose role is the service and resource orchestration. It receives service requests, each one characterized by a Service Function Chain, which is a set of service functions to be executed according to a given order. It implements an algorithm for deciding where both to allocate the cloud and bandwidth resources and to route the SFCs. In a traditional orchestration algorithm, the orchestrator has a detailed knowledge of the cloud and network infrastructures and that can lead to high computational complexity of the SFC Routing and Cloud and Bandwidth resource Allocation (SRCBA) algorithm. In this paper, we propose and evaluate the effectiveness of a scalable orchestration architecture inherited by the one proposed within the European Telecommunications Standards Institute (ETSI) and based on the functional separation of an NFV orchestrator in Resource Orchestrator (RO) and Network Service Orchestrator (NSO). Each cloud domain is equipped with an RO whose task is to provide a simple and abstract representation of the cloud infrastructure. These representations are notified of the NSO that can apply a simplified and less complex SRCBA algorithm. In addition, we show how the segment routing technology can help to simplify the SFC routing by means of an effective addressing of the service functions. The scalable orchestration solution has been investigated and compared to the one of a traditional orchestrator in some network scenarios and varying the number of cloud domains. We have verified that the execution time of the SRCBA algorithm can be drastically reduced without degrading the performance in terms of cloud and bandwidth resource costs.
机译:网络功能虚拟化是一项新技术,可实现弹性云和带宽资源分配。该技术需要一个协调器,其角色是服务和资源的协调。它接收服务请求,每个服务请求都具有一个服务功能链,该功能链是根据给定顺序执行的一组服务功能。它实现了一种算法,用于确定在何处分配云资源和带宽资源以及路由SFC。在传统的编排算法中,编排者具有对云和网络基础结构的详细了解,这可能导致SFC路由和云与带宽资源分配(SRCBA)算法的计算复杂性高。在本文中,我们提出并评估了一种可扩展编排架构的有效性,该架构是由欧洲电信标准协会(ETSI)提出的一个可继承编排架构继承的,并且基于资源编排器(RO)和网络服务编排器(NF)中的NFV编排器的功能分离( NSO)。每个云域都配备了RO,RO的任务是提供云基础架构的简单抽象表示。 NSO通知了这些表示,这些NSO可以应用简化且不太复杂的SRCBA算法。此外,我们展示了段路由技术如何通过有效寻址服务功能来帮助简化SFC路由。已对可伸缩编排解决方案进行了研究,并将其与某些网络方案中的传统编排器之一进行了比较,并改变了云域的数量。我们已经证明,在不降低云和带宽资源成本的性能的情况下,可以大大减少SRCBA算法的执行时间。

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