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Implementation details to reduce the latency of an SDN Statistical Fingerprint-Based IDS

机译:实现细节,以减少基于SDN统计指纹ID的延迟

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The paper represents the first implementation step of a statistical fingerprint based Intrusion Detection System (IDS) exploiting the SDN architecture already in the state of the art. The IDS collects traffic data and implements a suitable machine learning based algorithm to detect the possible presence of malware within the data traffic, developing the data management scheme within a Ryu SDN controller. The analysis of the performance of the SDN infrastructure by which the Statistical Fingerprint-Based IDS has been implemented identified critical issues. The first issue to tackle is the delay introduced by the SDN hardware/software, which may hinder the practical application of the IDS. This paper presents the improvements applied to the SDN infrastructure in order to reduce the delays introduced by the SDN software infrastructure in a Ethernet-based network, in view of an application over SCADA industrial systems. The analysis focuses on the peak delays that correspond to the action due to the arrival of the first packet of each new flow for which there are not rules in the flow tables of the SDN switch yet. The implemented actions are described in detail. The obtained results are really promising.
机译:本文代表了基于统计指纹的入侵检测系统(IDS)的第一实施步骤,其利用已经处于现有技术的SDN架构。 IDS收集流量数据并实现基于机器的合适的基于机器学习的算法,以检测数据流量内的恶意软件的存在,在Ryu SDN控制器中开发数据管理方案。对基于SDN基础设施的性能进行分析,通过该基础设施的性能已经确定了统计指纹的ID识别的关键问题。解决的第一个问题是SDN硬件/软件引入的延迟,可能阻碍ID的实际应用。本文介绍了应用于SDN基础架构的改进,以便在SCADA工业系统的应用程序的应用中减少基于以太网的网络中的SDN软件基础设施中引入的延迟。该分析侧重于对应于每个新流量的到达的动作对应的峰值延迟,其中包括SDN交换机的流量表中没有规则。已经详细描述了实现的动作。获得的结果非常有希望。

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