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Sabotage Attack Detection for Additive Manufacturing Systems

机译:适用于添加制造系统的破坏攻击检测

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This paper presents a novel multi-modal sabotage attack detection system for Additive Manufacturing (AM) machines. By utilizing multiple side-channels, we improve system state estimation significantly in comparison to uni-modal techniques. Besides, we analyze the value of each side-channel for performing attack detection in terms of mutual information shared with the machine control parameters. We evaluate our system on real-world test cases and achieve an attack detection accuracy of 98.15%. AM, or 3D Printing, is seeing practical use for the rapid prototyping and production of industrial parts. The digitization of such systems not only makes AM a crucial technology in Industry 4.0 but also presents a broad attack surface that is vulnerable to kinetic cyberattacks. In the field of AM security, sabotage attacks are cyberattacks that introduce inconspicuous defects to a manufactured component at any specific process of the AM digital process chain, resulting in the compromise of the component's structural integrity and load-bearing capabilities. Defense mechanisms that detect such attacks using side-channel analysis have been studied. However, most current works focus on modeling the state of AM systems using a single side-channel, thus limiting their effectiveness at attack detection. In this paper, we demonstrate the value of a multi-modal sabotage attack detection system in comparison to uni-modal techniques.
机译:本文提出了一种用于添加制造(AM)机器的新型多模态破坏攻击检测系统。通过利用多个侧通道,与UNI模态技术相比,我们显着提高系统状态估计。此外,我们分析每个侧通道的值,以便在与机器控制参数共享的互信息方面执行攻击检测。我们在现实世界测试用例上评估我们的系统,并达到98.15%的攻击检测精度。 AM,或3D打印,看实际用于工业部件的快速原型和生产。这些系统的数字化不仅使AM Ind Industy 4.0的重要技术,而且还提出了一种易受动力学网络攻击的广泛攻击面。在AM安全领域中,破坏攻击是网络内攻击,该网络内攻击在AM数字过程链的任何特定过程中对制造部件引入不起眼的缺陷,导致组件的结构完整性和承载能力的折衷。研究了使用侧通道分析检测这种攻击的防御机制。然而,大多数当前的工作侧重于使用单一侧通道建模AM系统的状态,从而限制了攻击检测的有效性。在本文中,我们展示了与Uni模态技术相比的多模态破坏攻击检测系统的值。

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