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Performance Analysis of a Hierarchical Inter-Domain Provisioning Framework for Multi-Domain Software-Defined Optical Transport Networks

机译:多域软件定义的光传输网络的分层域间配置框架的性能分析

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This paper analyzes the performance of a hierarchical inter-domain provisioning (HIP) framework for multi-domain software-defined optical transport networks (SD-OTNs). The challenge of this paper is to evaluate the performance and scalability of the HIP framework so that the framework can account for the complexity of the inter-domain routing and wavelength assignment (RWA) problem of the underlying OTNs. The framework is implemented in an experimental test-bed to show the effectiveness of the HIP framework while ensuring seamless integration of multiple OTNs in a hierarchical control plane architecture. In addition to the experimental evaluations, the throughput, latency, and power metric of the framework based on a closed-form queueing model are evaluated analytically by considering the RWA problem of the underlying OTNs. The analytic results show that the HIP framework significantly improves the performance of a large-scale OTN with respect to the provisioning delay and throughput. Despite the marginal benefits of the blocking probability, the HIP framework permits enhanced scalability up to 24, 000 times by using a three-layer control plane architecture for multi-domain SD-OTNs.
机译:本文分析了用于多域软件定义的光传输网络(SD-OTN)的分层域间配置(HIP)框架的性能。本文的挑战是评估HIP框架的性能和可伸缩性,以便该框架可以解决基础OTN的域间路由和波长分配(RWA)问题的复杂性。该框架在实验性试验台上实现,以展示HIP框架的有效性,同时确保将多个OTN无缝集成在分层控制平面体系结构中。除了实验评估之外,还通过考虑基础OTN的RWA问题,对基于封闭形式排队模型的框架的吞吐量,延迟和功率度量进行了分析评估。分析结果表明,HIP框架在配置延迟和吞吐量方面显着提高了大型OTN的性能。尽管阻塞概率具有边际优势,但HIP框架通过将三层控制平面体系结构用于多域SD-OTN,可以将扩展性提高到24,000倍。

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