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On-Chip Magnetic Probes for Hardware Trojan Prevention and Detection

机译:用于硬件木马预防和检测的片上磁探头

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摘要

Security threats due to Hardware Trojans are growing in volume and variety. The miniature size of Trojans coupled with their diversity and their unpredictable effects made them difficult to detect. Researchers have proposed different techniques to either prevent the insertion of Hardware Trojans or detect them at early stages. In this article, a new tamper resilient solution is presented to capture the electromagnetic signature of integrated circuits to ensure their security. In the proposed method, the remaining metal and polysilicon layers are fully utilized as internal magnetic probes to monitor the signature of the device and in the meantime deprive attackers of layout resources to route Hardware Trojans. 3-D full-wave electromagnetic field simulations using high-frequency structural simulator show that tampering with a chip to insert a minimally invasive Trojan of 12 mu m(2), the area required to insert an inverter, can be detected through the magnetic signature.
机译:硬件特洛伊木马因金人的安全威胁正在增长和品种。特洛伊木马的微型尺寸与其多样性及其不可预测的效果相结合,使其难以检测。研究人员提出了不同的技术,以防止在早期阶段插入硬件木马或检测它们。在本文中,提出了一种新的篡改弹性解决方案以捕获集成电路的电磁特征,以确保其安全性。在所提出的方法中,剩余的金属和多晶硅层充分利用作为内部磁探针,以监测设备的签名,并在平铺资源的平时剥夺攻击者路由硬件特洛伊木马。使用高频结构模拟器的3-D全波电磁场模拟显示,篡改芯片插入12μm(2)的最小侵入性的木马,可以通过磁签名来检测插入逆变器所需的区域。

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