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Fix the Leak! An Information Leakage Aware Secured Cyber-Physical Manufacturing System

机译:修复泄漏!信息泄漏意识到安全网络 - 物理制造系统

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Cyber-physical additive manufacturing systems consists of tight integration of cyber and physical domains. This results in new cross-domain vulnerabilities that poses unique security challenges. One of the challenges is preventing confidentiality breach due to physical-to-cyber domain attacks, where attackers can analyze various analog emissions from the side-channels to steal the cyber-domain information. This information theft is based on the idea that an attacker can accurately estimate the relation between the analog emissions (acoustics, power, electromagnetic emissions, etc.,) and the cyber-domain data (such as G-code). To obstruct this estimation process, it is crucial to quantize the relation between the analog emissions and the cyber-data, and use it as a metric to generate computer aided manufacturing tools, such as slicing and tool-path generation algorithms, that are aware of these information leakage through the side-channels. In this paper, we present a novel methodology that uses mutual information as a metric to quantize the information leakage from the side-channels, and demonstrates how various design variables (such as object orientation, nozzle velocity, etc.,) can be used in an optimization algorithm to minimize the information leakage. Our methodology integrates this leakage aware algorithms to the state-of-the-art slicing and tool-path generation algorithms and achieves 24.76% average drop in the information leakage through acoustic side-channel. To the best of our knowledge, this is the first work that demonstrates the idea of generating information leakage aware computer aided manufacturing tools for protecting the confidentiality of the manufacturing system.
机译:网络物理添加剂制造系统由网络和物理域的紧密整合组成。这导致新的跨域漏洞造成了独特的安全挑战。由于身体到网络域攻击,攻击者可以从侧视通道分析各种模拟排放来防止机密性违规,以窃取网络域信息。该信息被盗是基于攻击者可以准确地估计模拟排放(声学,电源,电磁排放等)和网络域数据(例如G代码)之间的关系的想法。为了妨碍这种估计过程,量化模拟排放和网络数据之间的关系至关重要,并将其作为指标来生成计算机辅助制造工具(例如切片和工具路径生成算法)这些信息通过侧视通道泄漏。在本文中,我们提出了一种新的方法,该方法使用互信息作为指标来量化来自侧视通道的信息泄漏,并演示了如何使用各种设计变量(例如对象方向,喷嘴速度等)一种最大限度地减少信息泄漏的优化算法。我们的方法集成了这种泄漏意识算法,以最先进的切片和工具路径生成算法,通过声侧通道实现信息泄漏的平均下降24.76%。据我们所知,这是第一个演示了解信息泄漏意识的计算机辅助制造工具的第一项工作,以保护制造系统的机密性。

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