A New Reliable Controller Placement Model for Software-Defined WANs

Ahmad Jalili, Manijeh Keshtgari
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引用次数: 8

Abstract

Software-Defined Network (SDNs) is a decoupled architecture that enables administrators to build a customizable and manageable network. Although the decoupled control plane provides flexible management and facilitates the task of operating the network, it is the vulnerable point of failure in SDN. To achieve a reliable control plane, multiple controller are often needed so that each switch must be assigned to more than one controller. In this paper, a Reliable Controller Placement Problem Model (RCPPM) is proposed to solve such a problem, so as to maximize the reliability of software defined networks. Unlike previous works that only consider latencies parameters, the new model takes into account the load of control traffic and reliability metrics as well. Furthermore, a near-optimal algorithm is proposed to solve the NP-hard RCPPM in a heuristic manner. Finally, through extensive simulation, a comprehensive analysis of the RCPPM is presented for various topologies extracted from Internet Topology Zoo. Our performance evaluations show the efficiency of the proposed framework.
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一种新的软件定义广域网可靠控制器布局模型
软件定义网络(SDN)是一种解耦的体系结构,使管理员能够构建一个可定制和可管理的网络。尽管解耦的控制平面提供了灵活的管理并方便了操作网络的任务,但它是SDN中的薄弱点。为了实现可靠的控制平面,通常需要多个控制器,因此每个交换机必须分配给多个控制器。本文提出了一个可靠控制器布局问题模型(RCPPM)来解决这一问题,以最大限度地提高软件定义网络的可靠性。与以前只考虑延迟参数的工作不同,新模型还考虑了控制流量的负载和可靠性指标。此外,提出了一种近似最优算法,以启发式的方式求解NP难的RCPPM。最后,通过广泛的仿真,对从互联网拓扑动物园中提取的各种拓扑进行了RCPPM的综合分析。我们的绩效评估显示了拟议框架的效率。
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