Multi-Objective Controller Failure Aware Capacitated Controller Placement in Software-Defined Networks

P. Aravind, G. Varma, P. Reddy
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Abstract

Software-Defined Networking disassociates the control plane from data plane. The problem of deciding upon the number and locations of controllers and assigning switches to them has attracted the attention of researchers. Foreseeing the possibility of failure of a controller, a backup controller has to be maintained for each switch so that the switches assigned to the failed controller can immediately be connected to their backup controllers. Hence, the switches cannot experience disconnections in case of failure of their controller. In this paper, two mathematical models are proposed. The first model focuses on minimizing the average of latencies from all switches to their backup controllers while considering the failure of the controllers. The second model aims at minimizing both the average and worst-case of latencies from all switches to the corresponding backup controllers. Both of our models are evaluated on three networks and are compared (in terms of two metrics, viz., average and worst-case latencies) with an existing model that focuses on minimizing only worst-case latency. The first model gives better average latency compared to the reference model. The second model also gives better average latency and almost equal worst-case latency compared to the reference model.
软件定义网络中多目标控制器故障感知能力控制器布局
软件定义网络将控制平面与数据平面分离。如何确定控制器的数量和位置,并为它们分配开关,一直是研究人员关注的问题。预见到控制器故障的可能性,必须为每个交换机保留一个备份控制器,以便分配给故障控制器的交换机能够立即连接到其备份控制器。因此,在控制器故障的情况下,开关不会经历断开。本文提出了两种数学模型。第一个模型的重点是最小化从所有交换机到其备份控制器的平均延迟,同时考虑控制器的故障。第二个模型的目标是最小化从所有交换机到相应备份控制器的平均和最坏情况延迟。我们的两个模型都在三个网络上进行了评估,并与一个专注于最小化最坏情况延迟的现有模型进行了比较(根据两个指标,即平均和最坏情况延迟)。与参考模型相比,第一个模型提供了更好的平均延迟。与参考模型相比,第二个模型还提供了更好的平均延迟和几乎相等的最坏情况延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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