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Scan Segmentation Approach to Magnify Detection Sensitivity for Tiny Hardware Trojan

机译:扫描分割方法可放大微型硬件木马的检测灵敏度

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摘要

Outsourcing of IC fabrication components has initiated the potential threat of design tempering using hardware Trojans and also has drawn the attention of government agencies and the semiconductor industry. The added functionality, known as hardware Trojan, poses major detection and isolation challenges. This paper presents a hardware Trojan detection technique that magnifies the detection sensitivity for small Trojan in power-based side-channel analysis. A scan segmentation approach with a modified LOC test pattern application method is proposed so as to maximize dynamic power consumption of any target segment. The proposed architecture allows activating any target segment of scan chain and keeping others freeze which reduces total circuit switching activity. This helps magnify the Trojan's contribution to selected segment by reducing dynamic power consumption. Experimental results for ISCAS89 benchmark circuit demonstrate its effectiveness in side-channel analysis.
机译:IC制造组件的外包已引发使用硬件木马进行设计回火的潜在威胁,并且也引起了政府机构和半导体行业的关注。称为硬件Trojan的附加功能带来了重大的检测和隔离挑战。本文提出了一种硬件特洛伊木马检测技术,该技术可放大基于功率的边信道分析中小木马的检测灵敏度。提出了一种采用改进的LOC测试模式应用方法的扫描分割方法,以使任何目标段的动态功耗最大化。所提出的体系结构允许激活扫描链的任何目标段并保持其他目标段冻结,从而减少了总的电路交换活动。通过减少动态功耗,这有助于放大木马对选定网段的贡献。 ISCAS89基准电路的实验结果证明了其在边通道分析中的有效性。

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