对用于物联网安全评估的进化计算方法的实证分析

Vinay Kumar Sahu, Dhirendra Pandey, Priyanka Singh, Md Shamsul Haque Ansari, Asif Khan, Naushad Varish, Mohd Waris Khan
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引用次数: 0

摘要

物联网(IoT)战略使物理对象能够轻松地生产、接收和交换数据。物联网设备在我们的日常生活中越来越常见,应用范围从消费领域到工业和商业系统。物联网设备的快速扩展和广泛应用凸显了在设备开发生命周期中制定可靠有效的网络安全标准的重要意义。因此,如果漏洞被利用,将直接影响物联网设备和应用程序。在本文中,我们调查并评估了自 2010 年以来影响商业、工业和消费领域部署的物联网的各种真实世界关键物联网攻击/漏洞。随后,我们唤起了所阐述的真实世界攻击/漏洞的漏洞或攻击类型、利用技术、受损安全因素、漏洞强度和影响。我们首先对每种攻击如何影响信息安全参数进行分类,然后根据受影响的安全因素进行分类。接下来,我们使用两种著名的多标准决策(MCDM)技术,即模糊分析层次过程(F-AHP)和模糊分析网络过程(F-ANP),对所遇到的安全参数进行风险评估,以确定受到严重影响的信息安全措施的严重程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An empirical analysis of evolutionary computing approaches for IoT security assessment
The Internet of Things (IoT) strategy enables physical objects to easily produce, receive, and exchange data. IoT devices are getting more common in our daily lives, with diverse applications ranging from consumer sector to industrial and commercial systems. The rapid expansion and widespread use of IoT devices highlight the critical significance of solid and effective cybersecurity standards across the device development life cycle. Therefore, if vulnerability is exploited directly affects the IoT device and the applications. In this paper we investigated and assessed the various real-world critical IoT attacks/vulnerabilities that have affected IoT deployed in the commercial, industrial and consumer sectors since 2010. Subsequently, we evoke the vulnerabilities or type of attack, exploitation techniques, compromised security factors, intensity of vulnerability and impacts of the expounded real-world attacks/vulnerabilities. We first categorise how each attack affects information security parameters, and then we provide a taxonomy based on the security factors that are affected. Next, we perform a risk assessment of the security parameters that are encountered, using two well-known multi-criteria decision-making (MCDM) techniques namely Fuzzy-Analytic Hierarchy Process (F-AHP) and Fuzzy-Analytic Network Process (F-ANP) to determine the severity of severely impacted information security measures.
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