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AHP–TOPSIS integration extended with Pythagorean fuzzy sets for information security risk analysis

机译:AHP-TOPSIS集成扩展了勾股模糊集,用于信息安全风险分析

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摘要

Risk analysis (RA) contains several methodologies that object to ensure the protection and safety of occupational stakeholders. Multi attribute decision-making (MADM) is one of the most important RA methodologies that is applied to several areas from manufacturing to information technology. With the widespread use of computer networks and the Internet, information security has become very important. Information security is vital as institutions are mostly dependent on information, technology, and systems. This requires a comprehensive and effective implementation of information security RA. Analytic hierarchy process (AHP) and technique for order preference by similarity to ideal solution (TOPSIS) are commonly used MADM methods and recently used for RA. In this study, a new RA methodology is proposed based on AHP–TOPSIS integration extended with Pythagorean fuzzy sets. AHP strengthened by interval-valued Pythagorean fuzzy numbers is used to weigh risk parameters with expert judgment. Then, TOPSIS with Pythagorean fuzzy numbers is used to prioritize previously identified risks. A comparison of the proposed approach with three approaches (classical RA method, Pythagorean fuzzy VIKOR and Pythagorean fuzzy MOORA) is also provided. To illustrate the feasibility and practicality of the proposed approach, a case study for information security RA in corrugated cardboard sector is executed.
机译:风险分析(RA)包含几种旨在确保职业涉众的保护和安全的方法。多属性决策(MADM)是最重要的RA方法之一,应用于从制造业到信息技术的多个领域。随着计算机网络和Internet的广泛使用,信息安全已变得非常重要。信息安全至关重要,因为机构主要依赖信息,技术和系统。这就要求全面有效地实施信息安全RA。类似于理想解决方案(TOPSIS)的顺序分析的层次分析法(AHP)和技术是常用的MADM方法,最近用于RA。在这项研究中,提出了一种基于AHP-TOPSIS集成并扩展勾股模糊集的RA方法。通过区间值勾股模糊数加强的层次分析法(AHP)用于通过专家判断权衡风险参数。然后,使用勾股模糊数的TOPSIS来确定先前确定的风险的优先级。还提供了该方法与三种方法(经典RA方法,毕达哥拉斯模糊VIKOR和毕达哥拉斯模糊MOORA)的比较。为了说明该方法的可行性和实用性,我们对瓦楞纸板行业的信息安全RA进行了案例研究。

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