面向系统间安全分析的多智能体系统仿真体系结构扩展

Jamal El Hachem, Vanea Chiprianov, V. V. G. Neto, P. Aniorté
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引用次数: 5

摘要

安全性是软件密集型系统的一个重要关注点。应该在开发的早期阶段执行SoS安全评估的体系结构分析。此类活动可以防止漏洞并避免潜在的级联攻击紧急行为,即从单个组件安全漏洞中出现的一系列安全漏洞,可能导致SoS操作的中断和崩溃。模型仿真可以通过在设计时预测SoS对潜在攻击的反应来防止这些问题。由于安全性是一种质量属性,即从软件部件之间的关系中产生的属性,因此软件体系结构分析和模拟是对SoS安全性预测的额外支持。然而,尽管最近在这一领域取得了进展,但很少有模拟方法解决了安全SoS体系结构的模拟,其中所描述模型的基础是SoS行为或SoS组成系统(CS)之间的相互作用。本文的主要贡献是通过模拟提供了SoS安全分析的最新进展如何形成SoS安全预测的鲁棒框架的全景图。由于MAS和SoS概念之间的相似性,我们认为多智能体系统(MAS)对于SoS模拟的相关性,并且我们报告了MAS模拟如何使紧急行为可视化以及它们如何影响SoS安全性。我们促进SoS安全分析的结果包括(i) MAS概念模型和平台的扩展,以包括安全概念,(ii)模型驱动工程(MDE)方法,采用使用现有的基于sysml的建模语言(即SoSSecML)建模的安全SoS架构之间的自动映射,以及(iii)支持此类分析的MAS平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extending a Multi-Agent Systems Simulation Architecture for Systems-of-Systems Security Analysis
Security is an important concern for software-intensive Systems-of-Systems (SoS). Architectural analysis for SoS secturity assessment should be performed at early stages of development. Such activity could prevent vulnerabilities and avoid potential cascading attack emergent behaviors, i.e., a succession of security vulnerabilities that emerge from individual constituents security fragilities, potentially causing interruption and collapse of SoS operation. Model simulation can prevent these issues by predicting, at design-time, how SoS will behave regarding its reaction to potential attacks. As security is a quality attribute, i.e., a property that comes up from the relation between software parts, software architecture analysis and simulation are an additional support for the prediction of SoS security. However, despite recent advances in such area, few simulation approaches have tackled simulation of secure SoS architectures where the basis of the described models are the SoS behavior or the interactions among the SoS Constituent Systems (CS). The main contribution of this paper is offering a big picture of how recent advances on SoS security analysis via simulations can form a robust framework for SoS security prediction. We argue the pertinence of Multi-Agent Systems (MAS) for SoS simulation due to similarities between MAS and SoS concepts, and we report how MAS simulation enables the visualization of emergent behaviors and how they impact the SoS security. Our results to foster SoS security analysis include (i) an extension of a MAS conceptual model and platform to include security concepts, (ii) a Model-Driven Engineering (MDE) approach that adopts automatic mappings between secure SoS architecture modeled using an existing SysML-based modeling language, namely the SoSSecML, and (iii) a MAS platform to support such analysis.
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