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Byzantine-Resilient Secure Software-Defined Networks with Multiple Controllers in Cloud

机译:云中具有多个控制器的拜占庭弹性安全软件定义的网络

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Software-defined network (SDN) is the next generation of networking architecture that is dynamic, manageable, cost-effective, and adaptable, making it ideal for the high-bandwidth, dynamic nature of today’s applications. In SDN, network management is facilitated through software rather than low-level device configurations. However, the centralized control plane introduced by SDN imposes a great challenge for the network security. In this paper, we present a secure SDN structure, in which each device is managed by multiple controllers, not just a single as in a traditional manner, with the dynamic and isolated instance provided by the cloud. It can resist Byzantine attacks on controllers and the communication links between controllers and SDN switches. Furthermore, we study a controller minimization problem with security requirement and propose a cost-efficient controller assignment algorithm with a constant approximation ratio. From the experiment result, the secure SDN structure has little impact on the network latency, provide better security than general distributed controller, and the proposed algorithm performs higher efficiency than random assignment.
机译:软件定义网络(SDN)是动态,可管理,具有成本效益和可适应性的下一代网络体系结构,非常适合当今应用程序的高带宽,动态性质。在SDN中,通过软件而非底层设备配置来促进网络管理。但是,SDN引入的集中控制平面对网络安全提出了巨大挑战。在本文中,我们提出了一种安全的SDN结构,其中每个设备都由多个控制器管理,而不仅仅是传统方式中的单个控制器,并且由云提供了动态且隔离的实例。它可以抵抗对控制器以及控制器与SDN交换机之间的通信链接的拜占庭式攻击。此外,我们研究了具有安全性要求的控制器最小化问题,并提出了一种具有恒定近似比的经济高效的控制器分配算法。从实验结果来看,安全的SDN结构对网络时延影响不大,比一般的分布式控制器具有更好的安全性,并且所提出的算法比随机分配具有更高的效率。

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