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Resilient virtual network mapping against large-scale regional failures

机译:适用于大规模区域故障的弹性虚拟网络映射

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Network Function Virtualization (NFV) and Software-Defined Networking (SDN) technologies enable a fast way of deploying network services by instant initialization of virtual network functions on standardized commodity hardware, and a flexible network control and management via dynamic reconfigurations over open protocols. In particular, virtual networks from distinct tenants can be provisioned on the same physical network infrastructure to share the computing and networking resources through a process called virtual network mapping, which can lead to an efficient utilization of the underlying physical resources while guaranteeing the service isolation and performance efficiency. In the process of provisioning virtual networks, it is critically important to ensure that the virtual network services are resilient and they have the capability to continue functioning well in case of various failures such as fiber cuts, natural disasters and malicious attacks. In this paper, we study the problem of resilient virtual network mapping against large-scale regional failures, which are more challenging than existing network survivability designs in terms of single node/link failures or shared risk link group failures. We propose a novel region-disjoint mapping (RDM) algorithm which can map the primary and backup virtual networks into nonoverlapping geographical areas to survive large-scale regional failures. More specifically, the RDM algorithm adopts (1) the backtracking techniques to ensure the disjointness of the primary and backup virtual networks, and (2) the Suurballe's algorithm to jointly optimize the mapping of primary and backup virtual networks in one-step. Simulation results show that the proposed RDM algorithm achieves much lower physical network resource consumption and blocking probability.
机译:网络功能虚拟化(NFV)和软件定义网络(SDN)技术能够通过对标准化的商品硬件的虚拟网络功能即时初始化,并通过在开放的协议重新配置动态灵活的网络控制和管理部署网络服务的快捷方法。特别是,从不同的租户虚拟网络可以在相同的物理网络基础设施被提供到共享通过所谓的虚拟网络映射处理的计算和网络资源,这会导致对底层物理资源的有效利用,同时保证服务隔离和性能效率。在配置虚拟网络的过程中,至关重要的是确保虚拟网络服务是有弹性的,他们必须继续在各种故障,例如光纤断裂,自然灾害和恶意攻击的情况下,运作良好的能力。在本文中,我们研究对大范围的区域的故障的弹性虚拟网络映射,这是在单节点/链路故障或共享风险链路组故障方面比现有的网络生存设计更具挑战性的问题。我们提出了一个新颖的区域不相交的映射(RDM)算法可在主要和备份虚拟网络映射到不重叠的地理区域中生存的大型区域的故障。更具体地,RDM算法采用(1)的回溯技术,以确保主,备份虚拟网络的不相交,和(2)Suurballe算法联合优化一步法主要和备份虚拟网络的映射。仿真结果表明,所提出的RDM算法实现了低得多的物理网络资源消耗和阻塞概率。

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