基于元胞自动机的智能手机蠕虫传播时空动态建模

Gabriel Gonzalez Garcia, María E. Lárraga-Ramírez
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引用次数: 5

摘要

近年来,不断扩大的智能手机市场已成为越来越有吸引力的恶意攻击目标。这推动了模型的不断发展,以理解智能手机恶意软件的行为并描述其空间传播。移动恶意软件渗透的可能通信渠道之一是蓝牙接口,恶意软件会像生物病毒一样感染其附近的设备。本文提出了一种基于元胞自动机和区隔流行病学模型的蓝牙蠕虫时空传播动态研究数学模型。该模型考虑了智能手机之间的局部交互,并且能够模拟每个移动设备的个体动态。此外,该模型还考虑了机动性对感染传播的影响。仿真结果表明,该模型捕捉到了蓝牙蠕虫传播的时空动态,有助于预测恶意软件的传播演变。此外,该模型的计算成本较低,适合了解建模的恶意软件的行为,并预测蓝牙蠕虫在大范围内的传播曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling the Spatio-Temporal Dynamics of Worm Propagation in Smartphones Based on Cellular Automata
In recent years, the expanding smartphone market has become an increasingly attractive target for malicious attacks. This has motivated the continuous development of models to understand the behavior of smartphone malware and describe its spatial propagation. One of possible communication channels for the penetration of mobile malware is the Bluetooth interface, where the malware infects devices in its proximity as biological virus does. In this paper, a new mathematical model to study the spatio-temporal propagation dynamics of Bluetooth worms based on cellular automata and the compartmental epidemiological models is introduced. The model takes into account the local interactions between the smartphones and it is able to simulate the individual dynamic of each mobile device. Furthermore, the model consider the effect of mobility on the infection propagation. Some simulation results indicate that the model captures the spatio-temporal dynamics of Bluetooth worm propagation and facilitates predictions of the evolution of the malware spreading. In addition, the computational cost of the model is low, making it suitable to understand the behavior of a modeled malware and predict the spreading curves of Bluetooth worm propagation in large areas.
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