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A Fuzzy Approach based on Dynamic Programming and Metaheuristics for Selecting Safeguards for Risk Management for Information Systems

机译:一种基于动态规划和美术学的模糊方法,用于了解信息系统风险管理的保障措施

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摘要

In this paper we focus on the selection of safeguards in a fuzzy risk analysis and management methodology for information systems (IS). Assets are connected by dependency relationships, and a failure of one asset may affect other assets. After computing impact and risk indicators associated with previously identified threats, we identify and apply safeguards to reduce risks in the IS by minimizing the transmission probabilities of failures throughout the asset network. However, as safeguards have associated costs, the aim is to select the safeguards that minimize costs while keeping the risk within acceptable levels. To do this, we propose a dynamic programming-based method that incorporates simulated annealing to tackle optimizations problems.
机译:在本文中,我们专注于信息系统(IS)的模糊风险分析和管理方法中的保障措施选择。资产通过依赖关系连接,并且一项资产的故障可能会影响其他资产。在计算了与先前确定的威胁相关的影响和风险指标之后,我们通过最小化整个资产网络中故障的传输概率来确定并应用保护措施,以降低IS中的风险。但是,由于保障措施具有相关的成本,因此目标是选择能够将成本降至最低,同时将风险保持在可接受水平内的保障措施。为此,我们提出了一种基于动态编程的方法,该方法结合了模拟退火来解决优化问题。

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