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An Error Correction Approach to Memristors PUF-based Key Encapsulation

机译:基于Memristors PUF的密钥封装的纠错方法

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A novel Physically Unclonable Functions (PUF)-based keyless encapsulation protocol was recently proposed by our team that does not rely on cryptographic keys and directly encrypts the messages using the unique responses extracted from embedded ReRAM PUFs in the devices. Therefore, this method avoids challenges and security threats due to key storage and distribution. Since this protocol uses analog resistance values from ReRAM PUFs for message encryption, the protocol is sensitive to variations in PUF responses due to environmental conditions. Therefore, it requires schemes to minimize the impact of such variations to guarantee the integrity of the decryption of the message. In this paper, we develop protocols to utilize Error Correction Coding (ECC) mechanisms to stabilize the cipher text encrypted with this protocol. The ECC-based key encapsulation protocol was evaluated using Reed-Solomon and BCH codes. The results show the effectiveness of the proposed protocol in offering noise-free messages under common ranges of environmental variations in ReRAM PUF responses.
机译:最近由我们的团队提出了一种基于物理不可忽略的功能(PUF)的无钥匙封装协议,这些功能不依赖于加密密钥,并使用从设备中的嵌入式reram pufs中提取的唯一响应直接加密消息。因此,由于密钥存储和分发,此方法避免了挑战和安全威胁。由于该协议使用来自Reram Pufs的模拟电阻值进行消息加密,因此协议对由于环境条件而导致的PUF响应的变化敏感。因此,它需要方案来最小化这种变化的影响,以保证消息解密的完整性。在本文中,我们开发利用纠错编码(ECC)机制来稳定用该协议加密的密文的协议。使用Reed-Solomon和BCH代码评估基于ECC的密钥封装协议。结果表明,拟议的协议在常见的环境变异范围内提供无噪音信息的有效性。

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