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Concealing Ketje: A Lightweight PUF-Based Privacy Preserving Authentication Protocol

机译:隐藏Ketje:基于轻量级PUF的隐私保留身份验证协议

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In this paper, we focus on the design of a novel authentication protocol that preserves the privacy of embedded devices. A Physically Unclonable Function (PUF) generates challenge-response pairs that form the source of authenticity between a server and multiple devices. We rely on Authenticated Encryption (AE) for confidentiality, integrity and authenticity of the messages. A challenge updating mechanism combined with an authenticate-before-identify strategy is used to provide privacy. The major advantage of the proposed method is that no shared secrets need to be stored into the device's non-volatile memory. We design a protocol that supports server authenticity, device authenticity, device privacy, and memory disclosure. Following, we prove that the protocol is secure, and forward and backward privacy-preserving via game transformations. Moreover, a proof of concept is presented that uses a 3-1 Double Arbiter PUF, a concatenation of repetition and BCH error-correcting codes, and the AE-scheme Ketje. We show that our device implementation utilizes 8,305 LUTs on a 28 nm Xilinx Zynq XC7Z020 System on Chip (SoC) and takes only 0.63 ms to perform an authentication operation.
机译:在本文中,我们着重于设计一种新颖的身份验证协议,该协议可保留嵌入式设备的隐私。物理上不可克隆的功能(PUF)生成质询-响应对,这些对-响应对构成服务器与多个设备之间的真实性来源。我们依靠身份验证加密(AE)来确保消息的机密性,完整性和真实性。质询更新机制与先认证先认证策略相结合,用于提供隐私。所提出方法的主要优点是不需要将共享机密存储到设备的非易失性存储器中。我们设计了一种协议,该协议支持服务器真实性,设备真实性,设备隐私和内存公开。接下来,我们证明该协议是安全的,并且可以通过游戏转换来向前和向后保留隐私。此外,提出了使用3-1 Double Arbiter PUF,重复和BCH纠错码的串联以及AE方案Ketje的概念证明。我们展示了我们的设备实现在28 nm Xilinx Zynq XC7Z020片上系统(SoC)上利用了8,305个LUT,并且仅花费0.63 ms即可执行认证操作。

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