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An Anti-Electromagnetic Attack PUF Based on a Configurable Ring Oscillator for Wireless Sensor Networks

机译:基于可配置环形振荡器的无线传感器网络抗电磁攻击PUF

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摘要

Wireless sensor networks (WSNs) are an emerging technology employed in some crucial applications. However, limited resources and physical exposure to attackers make security a challenging issue for a WSN. Ring oscillator-based physical unclonable function (RO PUF) is a potential option to protect the security of sensor nodes because it is able to generate random responses efficiently for a key extraction mechanism, which prevents the non-volatile memory from storing secret keys. In order to deploy RO PUF in a WSN, hardware efficiency, randomness, uniqueness, and reliability should be taken into account. Besides, the resistance to electromagnetic (EM) analysis attack is important to guarantee the security of RO PUF itself. In this paper, we propose a novel architecture of configurable RO PUF based on exclusive-or (XOR) gates. First, it dramatically increases the hardware efficiency compared with other types of RO PUFs. Second, it mitigates the vulnerability to EM analysis attack by placing the adjacent RO arrays in accordance with the cosine wave and sine wave so that the frequency of each RO cannot be detected. We implement our proposal in XINLINX A-7 field programmable gate arrays (FPGAs) and conduct a set of experiments to evaluate the quality of the responses. The results show that responses pass the National Institute of Standards and Technology (NIST) statistical test and have good uniqueness and reliability under different environments. Therefore, the proposed configurable RO PUF is suitable to establish a key extraction mechanism in a WSN.
机译:无线传感器网络(WSN)是在某些关键应用中采用的新兴技术。但是,有限的资源和攻击者所面临的实际风险使安全成为WSN面临的挑战。基于环形振荡器的物理不可克隆功能(RO PUF)是保护传感器节点安全性的潜在选择,因为它能够有效地生成用于密钥提取机制的随机响应,从而防止了非易失性存储器存储秘密密钥。为了在WSN中部署RO PUF,应考虑硬件效率,随机性,唯一性和可靠性。此外,抗电磁(EM)分析攻击对于确保RO PUF本身的安全性也很重要。在本文中,我们提出了一种基于异或门(XOR)的可配置RO PUF的新型架构。首先,与其他类型的RO PUF相比,它大大提高了硬件效率。其次,它通过按照余弦波和正弦波放置相邻的RO阵列来减轻EM分析攻击的脆弱性,从而无法检测每个RO的频率。我们在XINLINX A-7现场可编程门阵列(FPGA)中实施我们的建议,并进行了一组实验以评估响应的质量。结果表明,响应通过了美国国家标准技术研究院(NIST)的统计测试,并且在不同环境下具有良好的唯一性和可靠性。因此,所提出的可配置的RO PUF适合于在WSN中建立密钥提取机制。

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