在信息物理系统中确保可信度:一种博弈论方法

J. Jithish, S. Sankaran, K. Achuthan
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引用次数: 3

摘要

网络物理系统(cps)的出现是信息和通信技术(ICT)使用的潜在范式转变。信息和通信技术在当今时代的作用已从主要是信息和通信服务的推动者扩展到对物理世界中的对象和资源的管理。因此,必须设计确保数据可信的机制,以保护易受攻击的设备免受安全威胁。这项工作提出了一个基于非合作博弈论的分析框架,以评估构成CPS的单个传感器节点的可信度。提出的博弈论模型捕获了影响CPS传感器节点可信度的因素。进一步,利用该模型对博弈的纳什均衡解进行估计,得到信任阈值准则。信任阈值表示CPS运行期间各个传感器节点需要维护的最小信任分数。信任值低于阈值的传感器节点存在潜在恶意,为保证CPS的安全运行,可将其移除或隔离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Ensuring Trustworthiness in Cyber-Physical Systems: A Game-Theoretic Approach
The emergence of Cyber-Physical Systems (CPSs) is a potential paradigm shift for the usage of Information and Communication Technologies (ICT). From predominantly a facilitator of information and communication services, the role of ICT in the present age has expanded to the management of objects and resources in the physical world. Thus, it is imperative to devise mechanisms to ensure the trustworthiness of data to secure vulnerable devices against security threats. This work presents an analytical framework based on non-cooperative game theory to evaluate the trustworthiness of individual sensor nodes that constitute the CPS. The proposed game-theoretic model captures the factors impacting the trustworthiness of CPS sensor nodes. Further, the model is used to estimate the Nash equilibrium solution of the game, to derive a trust threshold criterion. The trust threshold represents the minimum trust score required to be maintained by individual sensor nodes during CPS operation. Sensor nodes with trust scores below the threshold are potentially malicious and may be removed or isolated to ensure the secure operation of CPS.
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