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Processor-Based Strong Physical Unclonable Functions With Aging-Based Response Tuning

机译:基于处理器的强大物理不可克隆功能以及基于老化的响应调整

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A strong physically unclonable function (PUF) is a circuit structure that extracts an exponential number of unique chip signatures from a bounded number of circuit components. The strong PUF unique signatures can enable a variety of low-overhead security and intellectual property protection protocols applicable to several computing platforms. This paper proposes a novel lightweight (low overhead) strong PUF based on the timings of a classic processor architecture. A small amount of circuitry is added to the processor for on-the-fly extraction of the unique timing signatures. To achieve desirable strong PUF properties, we develop an algorithm that leverages intentional post-silicon aging to tune the inter- and intra-chip signatures variation. Our evaluation results show that the new PUF meets the desirable inter- and intra-chip strong PUF characteristics, whereas its overhead is much lower than the existing strong PUFs. For the processors implemented in 45 nm technology, the average inter-chip Hamming distance for 32-bit responses is increased by 16.1% after applying our post-silicon tuning method; the aging algorithm also decreases the average intra-chip Hamming distance by 98.1% (for 32-bit responses).
机译:强大的物理不可克隆功能(PUF)是一种电路结构,可从有限数量的电路组件中提取指数级的唯一芯片签名。强大的PUF独特签名可以启用适用于多个计算平台的各种低开销安全性和知识产权保护协议。本文基于经典处理器体系结构的时序提出了一种新颖的轻量级(低开销)强PUF。少量电路被添加到处理器中,用于动态提取唯一的时序签名。为了获得理想的强大PUF属性,我们开发了一种算法,该算法利用有意的硅后老化来调整芯片间和芯片内签名的变化。我们的评估结果表明,新的PUF可以满足所需的芯片间和芯片内强大的PUF特性,而其开销却远远低于现有的强大PUF。对于采用45 nm技术实现的处理器,采用我们的后硅调整方法后,32位响应的平均芯片间汉明距离增加了16.1%。老化算法还使平均芯片内汉明距离减少了98.1%(对于32位响应)。

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