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Implementation of Ring-Oscillators-Based Physical Unclonable Functions with Independent Bits in the Response

机译:响应中具有独立位的基于环形振荡器的物理不可克隆功能的实现

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The paper analyzes and proposes some enhancements of Ring-Oscillators-based Physical Unclonable Functions (PUFs). PUFs are used to extract a unique signature of an integrated circuit in order to authenticate a device and/or to generate a key. We show that designers of RO PUFs implemented in FPGAs need a precise control of placement and routing and an appropriate selection of ROs pairs to get independent bits in the PUF response. We provide a method to identify which comparisons are suitable when selecting pairs of ROs. Dealing with power consumption, we propose a simple improvement that reduces the consumption of the PUF published by Suh et al. in 2007 by up to 96.6%. Last but not least, we point out that ring oscillators significantly influence one another and can even be locked. This questions the reliability of the PUF and should be taken into account during the design.
机译:本文分析并提出了一些基于环形振荡器的物理不可克隆功能(PUF)的增强功能。 PUF用于提取集成电路的唯一签名,以便认证设备和/或生成密钥。我们证明了用FPGA实现的RO PUF的设计人员需要精确控制布局和布线,并正确选择RO对以获取PUF响应中的独立位。我们提供了一种方法,可以在选择RO对时确定哪些比较合适。对于功耗,我们提出了一种简单的改进方法,可以减少Suh等人发表的PUF的功耗。在2007年上升了96.6%。最后但并非最不重要的一点是,我们指出环形振荡器会互相影响很大,甚至可以被锁定。这对PUF的可靠性提出了质疑,在设计过程中应予以考虑。

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