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Building Trusted Golden Models-free Hardware Trojan Detection Framework Against Untrustworthy Testing Parties Using A Novel Clustering Ensemble Technique

机译:使用新颖的聚类集群技术构建可信金色二型硬件特洛伊木马检测框架,反对不值得信赖的检测派对

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As a result of the globalization of integrated circuits (ICs) design and fabrication process, ICs are becoming vulnerable to hardware Trojans. Most of the existing hardware Trojan detection works suppose that the testing stage is trustworthy. However, testing parties may conspire with malicious attackers to modify the results of hardware Trojan detection. In this paper, we propose a trusted and robust hardware Trojan detection framework against untrustworthy testing parties exploiting a novel clustering ensemble method. The proposed technique can expose the malicious modifications on Trojan detection results introduced by untrustworthy testing parties. Compared with the state-of-the-art detection methods, the proposed technique does not require fabricated golden chips or simulated golden models. The experiment results on ISCAS89 benchmark circuits show that the proposed technique can resist modifications robustly and detect hardware Trojans with decent accuracy (up to 91%).
机译:由于集成电路(ICS)设计和制造过程的全球化,ICS变得易于硬件特洛伊木马。大多数现有的硬件特洛伊木马检测工程假设测试阶段是值得信赖的。但是,检测缔约方可以与恶意攻击者进行终结,以修改硬件木马检测结果。在本文中,我们提出了一种可靠和强大的硬件木马检测框架,免受不值得信赖的测试派对,利用新的聚类集群方法。该技术可以暴露不可信赖的检测缔约方引入的特洛伊木马检测结果的恶意修改。与最先进的检测方法相比,所提出的技术不需要制造金芯片或模拟金色模型。 ISCAS89基准电路的实验结果表明,该技术可以稳健地抵抗修改,并以体面的精度(高达91%)检测硬件特洛伊木马。

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