A game theoretic study of attack and defense in cyber-physical systems

Chris Y. T. Ma, N. Rao, David K. Y. Yau
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引用次数: 39

Abstract

Cyber-physical systems encompass a wide range of systems such as sensor networks, cloud computing complexes, and communication networks. They require both the cyber and physical components to function, and hence are susceptible to attacks on either. A cyber-physical system is characterized by the physical space that represents physical components, and the cyber space that represents computations and communications. In this paper, we present a number of game theoretic formulations of attack and defense aspects of cyber-physical systems under different cost and benefit functions and different budgets of the attacker and defender. We discuss the outcomes of the underlying game under linear, negative exponential, and S-shaped benefit functions. We show that the outcomes are determined by the Nash Equilibria (which sometimes occur at budget limits), which in turn determine the system survival.
网络物理系统攻击与防御的博弈论研究
信息物理系统包括广泛的系统,如传感器网络、云计算复合体和通信网络。它们需要网络和物理组件同时发挥作用,因此容易受到任何一种攻击。网络物理系统的特点是物理空间代表物理组件,网络空间代表计算和通信。在不同的成本效益函数和不同的攻击方和防御方预算下,我们给出了网络物理系统攻击和防御方面的一些博弈论公式。我们讨论了在线性、负指数和s形利益函数下潜在博弈的结果。我们证明了结果是由纳什均衡(有时发生在预算限制下)决定的,这反过来又决定了系统的生存。
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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