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A Game-Theoretic Decision-Making Framework for Engineering Self-Protecting Software Systems

机译:工程自保护软件系统的博弈论决策框架

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Targeted and destructive nature of strategies used by attackers to break down the system require mitigation approaches with dynamic awareness. Making a right decision, when facing today's sophisticated and dynamic attacks, is one of the most challenging aspects of engineering self-protecting software systems. Inspired by game theory, in this research work, we model the interactions between the attacker and the software system as a two-player game. Using game-theoretic techniques, the self-protecting software systems is able to: (i) fuse the strategies of attackers into the decision-making model, and (ii) refine the strategies in dynamic attack scenarios by utilizing what has learned from the system's and adversary's interactions. This research introduces a novel decision-making framework with three phases: (i) modeling quality goals aiming at incorporating them into the decision model, (ii) designing game-theoretic techniques in order to build the decision model, and (iii) realizing the decisionmaking engine in the adaptation manager. Modeling quality goals provides the adaptation manager with the knowledgebase required in making a systematic adaptation decision. The framework aims at exhibiting a plug-and-play capability to adapt game-theoretic techniques that suite security goals and requirements of the software.
机译:攻击者用来破坏系统的策略的针对性和破坏性,要求具有动态意识的缓解方法。在面对当今复杂而动态的攻击时,做出正确的决定是工程自保护软件系统最具挑战性的方面之一。受博弈论启发,在这项研究中,我们将攻击者与软件系统之间的交互建模为两人游戏。通过使用博弈论技术,自我保护软件系统能够:(i)将攻击者的策略融合到决策模型中;以及(ii)通过利用从系统的经验中学到的知识来完善动态攻击场景中的策略。和对手的互动。这项研究引入了一个新的决策框架,该框架分为三个阶段:(i)建模质量目标,旨在将其纳入决策模型;(ii)设计博弈论技术以构建决策模型;以及(iii)实现决策过程。适应管理器中的决策引擎。对质量目标进行建模可为适应管理人员提供做出系统适应决策所需的知识库。该框架旨在展示一种即插即用功能,以适应适合软件安全目标和要求的游戏理论技术。

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