Towards resilient critical infrastructures: Application of Type-2 Fuzzy Logic in embedded network security cyber sensor

O. Linda, M. Manic, J. Alves-Foss, T. Vollmer
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引用次数: 15

Abstract

Resiliency and cyber security of modern critical infrastructures is becoming increasingly important with the growing number of threats in the cyber environment. This paper proposes an extension to a previously developed fuzzy logic based anomaly detection network security cyber sensor via incorporating Type-2 Fuzzy Logic (T2 FL). In general, fuzzy logic provides a framework for system modeling in linguistic form capable of coping with imprecise and vague meaning of words. T2 FL is an extension of Type-1 FL which proved to be successful in modeling and minimizing the effects of various kinds of dynamic uncertainties. In this paper, T2 FL provides a basis for robust anomaly detection and cyber security state awareness. In addition, the proposed algorithm was specifically developed to comply with the constrained computational requirements of low-cost embedded network security cyber sensors. The performance of the system was evaluated on a set of network data recorded from an experimental cyber security test-bed.
面向弹性关键基础设施:2型模糊逻辑在嵌入式网络安全传感器中的应用
随着网络环境中威胁的增加,现代关键基础设施的弹性和网络安全变得越来越重要。本文提出了一种基于模糊逻辑的异常检测网络安全传感器的扩展,并加入了2型模糊逻辑(T2 FL)。一般来说,模糊逻辑以语言形式为系统建模提供了一个框架,能够处理不精确和模糊的单词含义。T2 FL是Type-1 FL的扩展,Type-1 FL在建模和最小化各种动态不确定性影响方面是成功的。在本文中,T2 FL为鲁棒异常检测和网络安全状态感知提供了基础。此外,该算法还专门针对低成本嵌入式网络安全网络传感器的约束计算需求而开发。在实验网络安全试验台记录的一组网络数据上对系统的性能进行了评估。
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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