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A PCA and Mahalanobis distance-based detectionmethod for logical hardware Trojan

机译:基于PCA和Mahalanobis距离的逻辑硬件木马检测方法

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Due to wide application of FPGA devices, which are easy to be attacked by HTs, it has been risen up more concern on chip security. In order to ensure the efficiency of detection, side-channel analysis is used to detect HTs. However, existing methods for HT detection cannot detect the LHTs with the small size, which takes up lower than 1% area of the whole chip, considering that signal of LHTs is drowned in process deviations. To complete the side-channel analysis for LHT, we proposed an algorithm that combines Effect of hole on sound absorption coefficient of micro-perforated panels investigated by Melling computing KunWang$1$2Wei Wang$3Xiong Yan$1; $1Donghua University, Shanghai, China$2College of Textile and Fashion, Hunan Institute of Engineer, Xiangtan, China$3Handan Polytechnic College, Handan, China; ;;262500616@qq.com; Microperforated board is one of the important ways to absorb noise. However, the mechanism is still not well understood of the interaction between micropores, and the influence of the distance between the micropores on the sound absorption performance of microperforated plates is still not clarified. Professor Merlin introduced the influence of micropore interaction on the sound absorption performance of microperforated plates. Based on Maa and Melling theory, this paper proposed an absorption coefficient that considers the effect of perforation interactions. In addition, the formula was used to calculate the absorption coefficient and the resonance frequency and, subsequently, was tested by the conducted experiments. The results show that the structure parameters of the micro-perforated panel affect its absorption coefficient, and the model can search the absorption coefficient more efficiently, with the calculated result close to the experimental value. cavity on the back; micro-perforated panel (MPP); nonlinear; sound absorption coefficient e4725.1-e4725.8 1-8 10.1002/cpe.4725PCA and Mahalanobis distance to improve the accuracy of LHTs detection. In addition, performed on FPGA of Xilinx, a sample of LHTs was designed and verified, which took up nearly 0.1% area of thewhole chip. The influence of process deviation on the power consumption of FPGA was simulated by Hspice. A set of power-frequency data of golden FPGA was generated by Matlab as panel data, which was considering the influence. Another two sets of FPGA with and without LHT were generated to test the accuracy of the proposed method. For LHT and golden FPGA, the detection accuracy of proposed method is 99% and 87%, respectively.
机译:由于FPGA设备的广泛应用,这易于受HTS攻击,因此已经对芯片安全性进行了更加关注。为了确保检测效率,侧通道分析用于检测HTS。然而,考虑到在过程偏差中淹没了LHT的信号,现有的HT检测方法不能检测到具有小尺寸的LHT,其占整个芯片的1%面积。为了完成LHT的侧通道分析,我们提出了一种算法,该算法结合了孔坤旺坤坤旺坤昆鞭1美元的微孔面板吸音系数的效果1美元王3×yan 1美元; 1美元,上海市上海市上海市纺织纺织和时尚,湖南工程师学院,湘潭,中国邯郸市邯郸市邯郸市; ;; 262500616@qq.com;微型电池板是吸收噪音的重要方法之一。然而,该机制仍然没有很好地理解微孔之间的相互作用,并且微孔之间的距离对微孔板的吸声性能的影响仍然不明确。 Merlin教授介绍了微孔相互作用对微薄板的吸声性能的影响。基于MAA和锯联理论,本文提出了一种吸收系数,其考虑穿孔相互作用的影响。另外,该公式用于计算吸收系数和共振频率,随后通过进行的实验测试。结果表明,微孔面板的结构参数影响其吸收系数,并且该模型可以更有效地搜索吸收系数,计算结果接近实验值。背面腔;微穿孔面板(MPP);非线性;吸声系数E4725.1-E4725.8 1-8 10.1002 / CPE.4725PCA和Mahalanobis距离,以提高LHT检测的精度。此外,在Xilinx的FPGA上进行,设计并验证了LHT样品,其占用了近0.1%的春季面积。通过HSPICE模拟了过程偏差对FPGA功耗的影响。 Matlab作为面板数据生成金FPGA的一组功率频率数据,这是考虑影响的面板数据。产生另外两组FPGA和没有LHT的FPGA以测试所提出的方法的准确性。对于LHT和Golden FPGA,所提出的方法的检测精度分别为99%和87%。

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