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A Unified Submodular Framework for Multimodal IC Trojan Detection

机译:用于多模式IC木马检测的统一子模块框架

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This paper presents a unified formal framework for integrated circuits (IC) Trojan detection that can simultaneously employ multiple noninvasive measurement types. Hardware Trojans refer to modifications, alterations, or insertions to the original IC for adversarial purposes. The new framework formally defines the IC Trojan detection for each measurement type as an optimization problem and discusses the complexity. A formulation of the problem that is applicable to a large class of Trojan detection problems and is submodular is devised. Based on the objective function properties, an efficient Trojan detection method with strong approximation and optimality guarantees is introduced. Signal processing methods for calibrating the impact of inter-chip and intra-chip correlations are presented. We propose a number of methods for combining the detections of the different measurement types. Experimental evaluations on benchmark designs reveal the low-overhead and effectiveness of the new Trojan detection framework and provides a comparison of different detection combining methods.
机译:本文提出了一种用于集成电路(IC)木马检测的统一正式框架,该框架可以同时采用多种非侵入式测量类型。硬件木马是为了对抗目的,是指对原始IC的修改,更改或插入。新框架正式将每种测量类型的IC Trojan检测定义为优化问题,并讨论了其复杂性。设计了适用于大量特洛伊木马检测问题并且是亚模块的问题的表述。基于目标函数的性质,提出了一种具有强逼近性和最优性保证的高效特洛伊木马检测方法。提出了用于校准芯片间和芯片内相关性影响的信号处理方法。我们提出了多种方法来组合不同测量类型的检测。对基准设计的实验评估揭示了新的Trojan检测框架的低开销和有效性,并提供了不同检测组合方法的比较。

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