On Approximate Opacity of Stochastic Control Systems

IF 7 1区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS IEEE Transactions on Automatic Control Pub Date : 2024-12-12 DOI:10.1109/TAC.2024.3516202
Siyuan Liu;Xiang Yin;Dimos V. Dimarogonas;Majid Zamani
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Abstract

This article investigates an important class of information-flow security property called opacity for stochastic control systems. Opacity captures whether a system's secret behavior (a subset of the system's behavior that is considered to be critical) can be kept from outside observers. Existing works on opacity for control systems only provide a binary characterization of the system's security level by determining whether the system is opaque or not. In this work, we introduce a quantifiable measure of opacity that considers the likelihood of satisfying opacity for stochastic control systems modeled as general Markov decision processes (gMDPs). We also propose verification methods tailored to the new notions of opacity for finite gMDPs by using value iteration techniques. Then, a new notion called approximate opacity-preserving stochastic simulation relation is proposed, which captures the distance between two systems' behaviors in terms of preserving opacity. Based on this new system relation, we show that one can verify opacity for stochastic control systems using their abstractions (modeled as finite gMDPs). We also discuss how to construct such abstractions for a class of gMDPs under certain stability conditions.
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随机控制系统的近似不透明度
本文研究了随机控制系统中一种重要的信息流安全性质——不透明性。不透明性捕获系统的秘密行为(系统行为的一个子集,被认为是关键的)是否可以对外部观察者保密。现有的关于控制系统不透明度的工作仅通过确定系统是否不透明来提供系统安全级别的二进制特征。在这项工作中,我们引入了一种可量化的不透明度度量,它考虑了作为一般马尔可夫决策过程(gMDPs)建模的随机控制系统满足不透明度的可能性。我们还通过使用值迭代技术提出了针对有限gdp不透明度新概念的验证方法。在此基础上,提出了一种近似保持不透明的随机模拟关系,该关系从保持不透明的角度来描述两个系统行为之间的距离。基于这种新的系统关系,我们证明了可以使用随机控制系统的抽象(建模为有限gmdp)来验证其不透明性。我们还讨论了在一定稳定性条件下如何构造一类gdp的抽象。
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来源期刊
IEEE Transactions on Automatic Control
IEEE Transactions on Automatic Control 工程技术-工程:电子与电气
CiteScore
11.30
自引率
5.90%
发文量
824
审稿时长
9 months
期刊介绍: In the IEEE Transactions on Automatic Control, the IEEE Control Systems Society publishes high-quality papers on the theory, design, and applications of control engineering. Two types of contributions are regularly considered: 1) Papers: Presentation of significant research, development, or application of control concepts. 2) Technical Notes and Correspondence: Brief technical notes, comments on published areas or established control topics, corrections to papers and notes published in the Transactions. In addition, special papers (tutorials, surveys, and perspectives on the theory and applications of control systems topics) are solicited.
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