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A Novel Detection Algorithm for Ring Oscillator Network Based Hardware Trojan Detection with Tactful FPGA Implementation

机译:基于圆滑FPGA的环形振荡器网络硬件木马检测新算法

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Hardware trojan detection is paid more and more attention in recent years due to the great potential threat imposed by hardware trojan to the whole integrated circuit industry. In this paper, ring oscillator network based hardware trojan detection method is tactfully implemented in FPGA and a novel corresponding detection algorithm is proposed. Incremental compilation technique is applied to design ring oscillator network and to insert trojans in FPGA. The method is verified effective for both sequential and combinational trojans. The trojans can be found with up to 20 to 200 times of detecting measurement based on their active status. Particularly, besides dynamic power consumption, extra static power consumed by trojan circuits are also used to differentiate trojan-free and trojan-inserted circuits.
机译:近年来,由于硬件木马对整个集成电路行业的巨大威胁,硬件木马检测受到越来越多的关注。本文在FPGA上巧妙地实现了基于环形振荡器网络的硬件木马检测方法,并提出了一种新颖的对应检测算法。增量编译技术被用于设计环形振荡器网络并在FPGA中插入木马。经验证,该方法对顺序式木马和组合式木马均有效。根据木马的活动状态,它们最多可以发现20到200次检测到的木马。特别是,除了动态功耗外,特洛伊木马电路消耗的额外静态功率还用于区分无特洛伊木马和插入特洛伊木马的电路。

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