Abstract How physical network topologies affect virtual network embedding quality: A characterization study based on ISP and datacenter networks
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How physical network topologies affect virtual network embedding quality: A characterization study based on ISP and datacenter networks

机译:物理网络拓扑如何影响虚拟网络嵌入质量:基于ISP和数据中心网络的特性研究

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摘要

Abstract Network virtualization is a mechanism that allows the coexistence of multiple virtual networks on top of a single physical substrate. Due to its well-known potential benefits (e.g., lower CAPEX/OPEX expenditures), it has been embraced by the IT sector, specially by Internet Service Providers (ISPs) and cloud computing/datacenter companies. One of the research challenges addressed recently in the literature is the efficient mapping of virtual resources on physical infrastructures. Although this challenge has received considerable attention, state-of-the-art approaches present, in general, a high rejection rate, i.e., the ratio between the number of denied virtual network requests and the total amount of requests is considerably high. In this work, we investigate the relationship between the quality of virtual network mappings and the topological structures of the underlying substrates. Exact solutions of an online embedding model are evaluated under different classes of ISP and datacenter network topologies. The obtained results demonstrate that the employment of physical topologies that contain regions with high connectivity significantly contributes to the reduction of rejection rates and, therefore, to improved resource usage. Additionally, through an extensive analysis of denied requests, we assess the main rejection causes related to both ISP and datacenter networks and provide strong evidence of each one. In summary, through the embedding of virtual requests, available resources in ISP networks tend to be more partitioned in comparison to datacenter networks. Such differences on partitioning levels lead to a different percentage of rejection causes in each topology class.
机译: 摘要 网络虚拟化是一种机制,可以使多个虚拟网络在单个物理基板上共存。由于其众所周知的潜在好处(例如,较低的CAPEX / OPEX支出),它已被IT部门所接受,尤其是Internet服务提供商(ISP)和云计算/数据中心公司。文献中最近解决的研究挑战之一是在物理基础架构上有效映射虚拟资源。尽管这一挑战已经引起了相当大的关注,但是通常存在最新的方法,即高拒绝率,即,被拒绝的虚拟网络请求的数量与请求总数之间的比率相当高。在这项工作中,我们调查了虚拟网络映射的质量和底层基板的拓扑结构之间的关系。在不同类别的ISP和数据中心网络拓扑下评估了在线嵌入模型的确切解决方案。获得的结果表明,采用包含具有高连通性区域的物理拓扑显着有助于降低拒绝率,从而改善资源利用率。此外,通过对拒绝请求的广泛分析,我们评估了与ISP和数据中心网络相关的主要拒绝原因,并为每一个提供了有力的证据。总而言之,通过嵌入虚拟请求,与数据中心网络相比,ISP网络中的可用资源往往更加分区。分区级别上的此类差异导致每种拓扑类别中拒绝原因的百分比不同。

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