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Disaster-resilient control plane design and mapping in software-defined networks

机译:软件定义网络中的灾难弹性控制平面设计与映射

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Communication networks, such as core optical networks, heavily depend on their physical infrastructure, and hence they are vulnerable to man-made disasters, such as Electromagnetic Pulse (EMP) or Weapons of Mass Destruction (WMD) attacks, as well as to natural disasters. Large-scale disasters may cause huge data loss and connectivity disruption in these networks. As our dependence on network services increases, the need for novel survivability methods to mitigate the effects of disasters on communication networks becomes a major concern. Software-Defined Networking (SDN), by centralizing control logic and separating it from physical equipment, facilitates network programmability and opens up new ways to design disaster-resilient networks. On the other hand, to fully exploit the potential of SDN, along with data-plane survivability, we also need to design the control plane to be resilient enough to survive network failures caused by disasters. Several distributed SDN controller architectures have been proposed to mitigate the risks of overload and failure, but they are optimized for limited faults without addressing the extent of large-scale disaster failures. For disaster resiliency of the control plane, we propose to design it as a virtual network, which can be solved using Virtual Network Mapping techniques. We select appropriate mapping of the controllers over the physical network such that the connectivity among the controllers (controller-to-controller) and between the switches to the controllers (switch-to-controllers) is not compromised by physical infrastructure failures caused by disasters. We formally model this disaster-aware control-plane design and mapping problem, and demonstrate a significant reduction in the disruption of controller-to-controller and switch-to-controller communication channels using our approach.
机译:通信网络,如核心光网络,很大程度上取决于他们的物理基础设施,因此他们很容易受到人为灾害,如电磁脉冲(EMP)或大规模杀伤性武器(WMD)的攻击,以及自然灾害。大规模的灾害可能会导致这些网络进行了大量的数据丢失和连接中断。由于我们的网络服务上的增加依赖,需要新的生存方式,以减轻对通信网络灾害的影响成为关注的重点。软件定义网络(SDN),通过集中控制逻辑,它从物理设备的分离,有利于网络可编程性和开辟了新的方法来设计抗灾网络。在另一方面,充分利用SDN的潜力,数据平面的生存以来,我们还需要设计的控制平面是有弹性的,足以生存灾害造成的网络故障。几个分布式SDN的控制器结构已被提出以减轻过载和故障的风险,但它们不解决大规模灾难故障的程度有限的故障进行了优化。对于控制平面的灾难恢复能力,我们建议它设计的虚拟网络,可以使用虚拟网络映射技术来解决。我们选择在物理网络上的控制器的适当的映射,使得控制器(控制器到控制器)和开关到控制器(交换机到控制器)之间间的连接不通过灾害造成物理基础设施故障损害。我们正式模拟这种灾难意识的控制平面设计和映射问题,并展示在控制器到控制器,并使用我们的接近开关到控制器的沟通渠道中断一个显著减少。

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