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Improving the Two-stage Detection of Cyberattacks in SDN Environment Using Dynamic Thresholding

机译:使用动态阈值改善SDN环境中的网络图中的两阶段检测

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In recent years, the DDoS (Distributed Denial of Service) attack continues to be one of the most dangerous threats even in the SDN (Software Defined Networking) environment. Many approaches have been proposed to deal with the DDoS attacks in the SDN environment. Among those approaches, the two-step detection, in which a trigger mechanism is added before the detection algorithm is called, is gaining more and more attention. In other words, it is the trigger, not the resource-consuming detection algorithm, that constantly monitors network traffic. Thus, the detection algorithm is only called when it is triggered. However, in the existing two-step methods, the trigger uses a static threshold to determine whether or not to start the detection process. In practice, it is difficult to determine an appropriate threshold, and the threshold has a decisive effect on the frequency of the detection process being called and ultimately, it impacts detection performance. In this paper, we propose a self-feedback dynamic thresholding system in which the threshold used in the trigger is dynamically adjusted based on the previous results of trigger and detection. Experimental results and our discussion show that our proposal significantly reduces the number of calls to the resource-consuming detection algorithm with no sacrifice of detection result.
机译:近年来,DDOS(分布式拒绝服务)攻击仍然是即使在SDN(软件定义的网络)环境中也是最危险的威胁之一。已经提出了许多方法来处理SDN环境中的DDOS攻击。在那些方法中,在调用检测算法之前添加触发机制的两步检测,正在增加越来越多的关注。换句话说,它是触发,而不是资源消耗检测算法,不断监控网络流量。因此,仅在触发时调用检测算法。但是,在现有的两步方法中,触发器使用静态阈值来确定是否启动检测过程。在实践中,难以确定适当的阈值,并且阈值对被调用的检测过程的频率具有决定性影响,并最终影响检测性能。在本文中,我们提出了一种自助式动态阈值系统,其中基于触发和检测的先前结果动态调整触发器中使用的阈值。实验结果和我们的讨论表明,我们的建议明显降低了对资源消耗检测算法的呼叫数量,没有牺牲检测结果。

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