Game Theoretic Approach for Cost-Benefit Analysis of Malware Proliferation Prevention

Abstract : Many existing research efforts in the field of malware proliferation aim at modelling and analysing its spread dynamics. Many malware dissemination models are based on the characteristics of biological disease spread in human populations. In this work, we utilise game theory in order to extend two very commonly used malware spread models (SIS and SIR) by incorporating defence strategies against malware proliferation. We consider three different security mechanisms, “patch”, “removal” and “patch and removal” on which our model is based. We also propose a cost-benefit model that describes optimal strategies the defender could follow when cost is taken into account. Lastly, as a way of illustration, we apply our models on the well studied Code-Red worm.
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Lech J. Janczewski; Henry B. Wolfe; Sujeet Shenoi. 28th Security and Privacy Protection in Information Processing Systems (SEC), Jul 2013, Auckland, New Zealand. Springer, IFIP Advances in Information and Communication Technology, AICT-405, pp.28-41, 2013, Security and Privacy Protection in Information Processing Systems. 〈10.1007/978-3-642-39218-4_3〉
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Theodoros Spyridopoulos, George Oikonomou, Theo Tryfonas, Mengmeng Ge. Game Theoretic Approach for Cost-Benefit Analysis of Malware Proliferation Prevention. Lech J. Janczewski; Henry B. Wolfe; Sujeet Shenoi. 28th Security and Privacy Protection in Information Processing Systems (SEC), Jul 2013, Auckland, New Zealand. Springer, IFIP Advances in Information and Communication Technology, AICT-405, pp.28-41, 2013, Security and Privacy Protection in Information Processing Systems. 〈10.1007/978-3-642-39218-4_3〉. 〈hal-01463844〉

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