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Obfuscated challenge-response: A secure lightweight authentication mechanism for PUF-based pervasive devices

机译:混淆的质询响应:基于PUF的普及型设备的安全轻量级身份验证机制

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Low cost pervasive devices such as RFID (radio-frequency identification) tags and sensor nodes are increasingly becoming part of the fabric of life. Using these pervasive devices to store and collect data securely is becoming a challenge because stringent requirements on power and area constrain the implementation of standard cryptographic mechanisms. In this paper, we propose a secure and lightweight authentication protocol for resource scarce pervasive devices built upon a physical unclonable function (PUF) primitive termed Obfuscated PUF (OB-PUF) and a variant of a parameter-based authentication protocol. This protocol sends obfuscated challenges to an OB-PUF where the subsequent recovery of the obfuscated challenges by a server (verifier) is guaranteed. In particular, our approach exploits server (verifer) aided computations to reduce the hardware complexity on the pervasive device while still maintaining a high level of security and taking advantage of the known vulnerability of PUFs to model building attacks. Most importantly, the unclonability of the OB-PUF is preserved and, consequently, OB-PUF based pervasive devices are resilient to cloning. We also show through statistical analysis and model building attacks the infeasibility of constructing a model of our proposed OB-PUF by an adversary.
机译:低成本普遍的设备,如RFID(射频识别)标签和传感器节点越来越变成生命面料的一部分。使用这些普遍的设备可以安全地存储和收集数据正成为一个挑战,因为对电源和区域的严格要求约束了标准加密机制的实现。在本文中,我们提出了一种安全和轻量级认证协议,用于基于物理不可衰减的函数(PUF)原始的被称为PUF(OB-PUF)和基于参数的认证协议的变体的安全和轻量级认证协议。该协议向OB-PUF发送困难的挑战,其中保证了服务器(验证程序)的随后恢复了混淆挑战。特别是,我们的方法利用服务器(Verifer)辅助计算以减少普遍设备上的硬件复杂性,同时仍然保持高水平的安全性并利用PUF的已知漏洞来模拟建筑物攻击。最重要的是,保留了OB-PUF的不可渗透性,因此,基于PUF的普华设备是有弹性的克隆。我们还通过统计分析和模型建设攻击攻击,通过对手构建我们提出的OB-PUF模型的不可行性。

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