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A Novel Key Generation Scheme Using Quaternary PUF Responses and Wiretap Polar Coding

机译:使用四元PUF响应和窃听极性编码的新型密钥生成方案

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Physical unclonable functions (PUFs) are widely considered in secret key generation for resource constrained devices. However, PUFs require additional hardware overhead. In this letter, we focus on developing a PUF-efficient, robust, and secure key generation scheme. First, a novel method for extracting quaternary PUF responses is proposed to increase the entropy of a PUF response, in which a 2-bit response is extracted from evaluating a single PUF cell multiple times. The probability masses of the responses can be adjusted by setting parameters appropriately. Then, a chosen secret model based fuzzy extractor (FE) is designed to extract secret keys from the quaternary PUF responses. To improve the security of this FE, it is modeled as a wiretap channel system, and wiretap polar coding is adopted to reduce secrecy leakage. An upper bound of secrecy leakage is also given in this letter, and it suggests that an arbitrarily small (even zero) leakage can be achieved by properly choosing parameters of the quaternary PUF responses generation. Comparison results show that the required number of PUF cells to achieve the same level of secrecy in our scheme is as low as half that of the state-of-the-art schemes.
机译:在资源受限设备的秘密密钥生成中广泛考虑物理不可渗透功能(PUF)。但是,PUFS需要额外的硬件开销。在这封信中,我们专注于开发PUF高效,强大,安全的密钥生成方案。首先,提出了一种提取四元质响应的新方法来增加PUF响应的熵,其中提取多次评估单个PUF小区的2比特响应。可以通过适当设置参数来调整响应的概率质量。然后,基于所选择的基于秘密模型的模糊提取器(FE)旨在从第四纪PUF响应中提取密钥。为了提高该FE的安全性,它被建模为窃听通道系统,采用窃听极性编码来减少保密泄漏。 An upper bound of secrecy leakage is also given in this letter, and it suggests that an arbitrarily small (even zero) leakage can be achieved by properly choosing parameters of the quaternary PUF responses generation.比较结果表明,在我们方案中实现相同的PUF细胞数量相同的保密程度低至最先进的方案的一半。

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