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Slender PUF Protocol: A Lightweight, Robust, and Secure Authentication by Substring Matching

机译:细长型PUF协议:通过子字符串匹配实现轻巧,强大和安全的身份验证

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We introduce Slender PUF protocol, an efficient and secure method to authenticate the responses generated from a Strong Physical Unclonable Function (PUF). The new method is lightweight, and suitable for energy constrained platforms such as ultra-low power embedded systems for use in identification and authentication applications. The proposed protocol does not follow the classic paradigm of exposing the full PUF responses (or a transformation of the full string of responses) on the communication channel. Instead, random subsets of the responses are revealed and sent for authentication. The response patterns are used for authenticating the prover device with a very high probability. We perform a thorough analysis of the method's resiliency to various attacks which guides adjustment of our protocol parameters for an efficient and secure implementation. We demonstrate that Slender PUF protocol, if carefully designed, will be resilient against all known machine learning attacks. In addition, it has the great advantage of an inbuilt PUF error tolerance. Thus, Slender PUF protocol is lightweight and does not require costly additional error correction, fuzzy extractors, and hash modules suggested in most previously known PUF-based robust authentication techniques. The low overhead and practicality of the protocol are confirmed by a set of hardware implementation and evaluations.
机译:我们引入了Slender PUF协议,这是一种有效且安全的方法,可以对从强大的物理不可克隆功能(PUF)生成的响应进行身份验证。新方法重量轻,适用于能量受限的平台,例如用于身份验证应用的超低功耗嵌入式系统。所提出的协议没有遵循在通信信道上暴露完整的PUF响应(或完整的响应字符串的转换)的经典范例。而是显示响应的随机子集并发送以进行身份​​验证。响应模式用于以极高的概率认证证明方设备。我们对方法对各种攻击的恢复能力进行了全面的分析,为我们的协议参数的调整提供了指导,以实现高效,安全的实施。我们证明,如果精心设计Slender PUF协议,它将可以抵抗所有已知的机器学习攻击。此外,它还具有内置PUF容错功能的巨大优势。因此,细长的PUF协议是轻量级的,不需要在大多数先前已知的基于PUF的可靠身份验证技术中建议的昂贵的附加纠错,模糊提取器和哈希模块。该协议的低开销和实用性通过一组硬件实现和评估得到证实。

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