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Tenant-defined service function chaining in a multi-site network slice

机译:租户定义的服务功能在多站点网络切片中链接

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Service Function Chaining (SFC) enables dynamic and adaptive network service provisioning. However, virtual infrastructure providers are reluctant to disclose SFC APIs and infrastructure monitoring information to tenants, therefore undermining tenants' capability in dynamically and flexibly managing application-tailored network services. In this work, we provide a two-fold contribution to the problem of tenant-defined service function chaining on a multi-site virtual infrastructure, which has not been widely investigated yet. First, we propose a VNF Selection algorithm that relies on an abstracted network model thus minimizing topological and monitoring information required by the infrastructure. Our algorithm selects a set of VNF instances that minimizes the end-to-end latency (accounting for network and processing delay) and also guarantees that already established chains do not violate their maximum latency constraint due to the additional load at VNFs brought by new chain requests. Second, we describe an SFC solution composed of an SFC application that uses our VNF Selection algorithm and a forwarding mechanism that manages chains and controls traffic steering within the tenant network without leveraging infrastructure control APIs. Validation and comparative evaluations are performed through simulations. Finally, the proposed approach is assessed through a set of experiments carried out on a multi-site testbed infrastructure.
机译:服务功能链接(SFC)启用动态和自适应网络服务配置。然而,虚拟基础设施提供商不愿意向租户披露SFC API和基础设施监控信息,从而在动态和灵活地管理应用程序量身定制的网络服务时破坏租户的能力。在这项工作中,我们为在多站点虚拟基础设施中链接的租户定义的服务函数问题提供了两倍的贡献,这尚未被广泛调查。首先,我们提出了一种依赖于抽象的网络模型的VNF选择算法,从而最大限度地减少基础设施所需的拓扑和监测信息。我们的算法选择一组VNF实例,可最大限度地减少端到端延迟(对网络和处理延迟的核算),并且还保证已建立的链不会违反其最大延迟约束,因为新链带来的VNF的额外负载要求。其次,我们描述了使用我们VNF选择算法和管理该租户网络内链和控制流量导向,而不利用基础设施控制的API转发机制的SFC应用程序组成的SFC解决方案。通过模拟进行验证和比较评估。最后,通过在多站点测试平底基础设施上进行的一组实验来评估所提出的方法。

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