网络系统中MIRAI恶意软件的追踪

Yao Xu, Hiroshi Koide, Danilo Vasconcellos Vargas, K. Sakurai
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引用次数: 6

摘要

到2021年,预计将有大约300亿个物联网(IoT)设备。物联网的巨大总价值使其成为网络犯罪分子诱人而有利可图的目标。Mirai恶意软件的爆发,利用出厂默认用户名和密码攻击安全性较差的物联网设备,发起分布式拒绝服务(DDoS)攻击,提高了人们对提高物联网安全性的必要性的广泛认识。为了更好地防御Mirai的感染和传播,了解恶意软件的运作方式是至关重要的第一步。本文对Mirai进行了静态和动态的综合分析,并在此基础上介绍了威胁跟踪器的应用。威胁跟踪器是一种信息系统模拟器,最初是为了帮助设计一个强大的系统来抵御高级持续攻击(APT)而开发的。它提供了一个直观的轨道,如何网络威胁的行为在一个复杂的网络系统。这些反馈同时有助于揭示系统的漏洞。我们的工作重点是在威胁跟踪器模拟中复制Mirai恶意软件的操作过程。通过这样做,我们相信它可以为Mirai的行为提供一个可理解的描述。此外,考虑到Mirai变种的不断出现,该模拟可以预测即将到来的威胁的行为模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tracing MIRAI Malware in Networked System
In 2021, it is anticipated that there will be approximately 30 billion Internet of Things (IoT) devices. The tremendous aggregate value of the IoT makes it a tempting and lucrative target for cyber criminals. The breakout of Mirai malware, which compromises poorly secured IoT devices with factory-default username and passphrase to launch Distributed Denial of Service (DDoS) attacks, has raised broad awareness towards the need for increased IoT security. To better defend against Mirai infection and spread, it is critical to know how the malware operates as the first step. In this paper, we give a combined static and dynamic analysis of Mirai, basing on the results of which, we introduce the application of Threat Tracer. Threat tracer is an information system simulator initially developed to help design a system robust against Advanced Persistent Attacks(APT). It offers an intuitive track on how a cyber threat behaves in a complicated networked system. The feedback simultaneously contributes to revealing vulnerabilities of a system. Our work focuses on the replication of Mirai Malware's operating processes in Threat Tracer simulation. By achieving doing so, we believe it could offer a comprehensible description of how Mirai acts. Also, considering the continuous emergence of Mirai variants, the simulation serves as a predictor on upcoming threats' behavior patterns.
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