多重非对称效用系统模型:网络-人系统建模的框架

Douglas Eskins, W. Sanders
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引用次数: 43

摘要

传统的网络安全建模方法要么没有明确地考虑系统参与者,要么假设一组独立于系统的固定参与者行为。越来越多的网络安全数据表明,系统参与者可以在创建或消除网络安全漏洞方面发挥重要作用。因此,需要考虑到人类参与者的行为和决策的网络安全分析工具。在本文中,我们提出了一种量化参与者决策如何影响系统安全性的建模方法。具体来说,我们介绍了网络人系统(CHS)及其要素的定义、用于根据系统任务对CHS要素进行分类的机会-意愿-能力(OWC)本体、作为一级系统模型要素的人类决策点(HDP),以及用于评估HDP对CHS影响的多不对称效用系统建模框架。这种建模方法为分析受人机交互影响的网络安全问题提供了一种结构化和定量的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Multiple-Asymmetric-Utility System Model: A Framework for Modeling Cyber-Human Systems
Traditional cyber security modeling approaches either do not explicitly consider system participants or assume a fixed set of participant behaviors that are independent of the system. Increasingly, accumulated cyber security data indicate that system participants can play an important role in the creation or elimination of cyber security vulnerabilities. Thus, there is a need for cyber security analysis tools that take into account the actions and decisions of human participants. In this paper, we present a modeling approach for quantifying how participant decisions can affect system security. Specifically, we introduce a definition of a cyber-human system (CHS) and its elements, the opportunity-willingness-capability (OWC) ontology for classifying CHS elements with respect to system tasks, the human decision point (HDP) as a first-class system model element, and the multiple-asymmetric-utility system modeling framework for evaluating the effects of HDPs on a CHS. This modeling approach provides a structured and quantitative means of analyzing cyber security problems whose outcomes are influenced by human-system interactions.
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