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Detection of Trojans Using a Combined Ring Oscillator Network and Off-Chip Transient Power Analysis

机译:使用组合环形振荡器网络和片外瞬态功率分析检测木马

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摘要

Verifying the trustworthiness of Integrated Circuits (ICs) is of utmost importance, as hardware Trojans may destroy ICs bound for critical applications. A novel methodology combining on-chip structure with external current measurements is proposed to verify whether or not an IC is Trojan free. This method considers Trojans' impact on neighboring cells and on the entire IC's power consumption, and effectively localizes the measurement of dynamic power. To achieve this, we develop a new on-chip ring oscillator network structure distributed across the entire chip and place each ring oscillator's components in different rows of a standard-cell design. By developing novel statistical data analysis, the effect of process variations on the ICs' transient power will be separated from the effect of Trojans. Simulation results using 90nm technology and experimental results on Xilinx Spartan-6 FPGAs demonstrate the efficiency of our proposed method.
机译:验证集成电路(IC)的可信赖性至关重要,因为硬件木马可能会破坏用于关键应用的IC。提出了一种将片上结构与外部电流测量相结合的新颖方法,以验证IC是否不含Trojan。这种方法考虑了特洛伊木马程序对相邻单元以及整个IC功耗的影响,并有效地确定了动态功率的测量范围。为此,我们开发了一种新的片上环形振荡器网络结构,该结构分布在整个芯片上,并将每个环形振荡器的组件放置在标准单元设计的不同行中。通过开发新颖的统计数据分析,工艺变化对IC瞬态功率的影响将与特洛伊木马的影响区分开。使用90nm技术的仿真结果以及在Xilinx Spartan-6 FPGA上的实验结果证明了该方法的有效性。

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