High Performance Scalable and Expressive Modeling Environment to Study Mobile Malware in Large Dynamic Networks

K. Channakeshava, K. Bisset, A. Vullikanti, M. Marathe, Shrirang M. Yardi
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引用次数: 20

Abstract

Large scale realistic simulations of malware on mobile wireless networks have recently become an increasingly important application of high-performance computing. We propose EpiCure - an individual-based, scalable high performance computing oriented modeling environment to study malware propagation over realistic mobile networks. It is designed specifically to work on commodity cluster architectures. EpiCure runs extremely fast for realistic instances that involve: (i) large time-varying networks consisting of millions of heterogeneous individuals with time varying interaction neighborhoods, (ii) dynamic interactions between disease propagation, device behavior, and the exogenous interventions, and (iii) large number of replicated runs necessary for statistically sound estimates about the stochastic epidemic evolution. We find that EpiCure runs several orders of magnitude faster than another comparable simulation tool while delivering similar results. Beyond simple compute speed, EpiCure has been designed so that analysts can easily represent a range of interventions leading to improved human productivity and ease of use. This is an increasingly important metric in high performance computing. We illustrate EpiCure using three case studies that bring out the novel features of EpiCure.
研究大型动态网络中移动恶意软件的高性能、可扩展和表达建模环境
在移动无线网络上对恶意软件进行大规模逼真的模拟,已成为高性能计算日益重要的应用领域。我们提出EpiCure——一个基于个人的,可扩展的高性能计算导向的建模环境来研究恶意软件在现实移动网络中的传播。它是专门设计用于商品集群架构的。EpiCure在实际实例中运行得非常快,包括:(i)由数百万具有时变相互作用邻域的异质个体组成的大型时变网络,(ii)疾病传播、设备行为和外源性干预之间的动态相互作用,以及(iii)对随机流行病演变进行统计可靠估计所必需的大量重复运行。我们发现,在提供类似结果的同时,EpiCure的运行速度比另一个类似的模拟工具快几个数量级。除了简单的计算速度之外,EpiCure的设计还使分析人员可以轻松地表示一系列干预措施,从而提高了人类的生产力和易用性。在高性能计算中,这是一个越来越重要的指标。我们使用三个案例研究来说明EpiCure的新特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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