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A Novel Security Authentication Protocol Based on Physical Unclonable Function for RFID Healthcare Systems

机译:基于RFID HealthCare系统的物理不可渗透功能的新型安全认证协议

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The Radio Frequency Identification (RFID) technology has been integrated into healthcare systems for the purpose of improving healthcare management. However, people have concerns about the security and privacy of this kind of RFID systems. In order to solve the security problems faced by RFID-based healthcare systems, a novel security authentication protocol based on Physical Unclonable Function (PUF) and Advanced Encryption Standard (AES) encryption algorithm is designed. The protocol uses PUF technology to output unique and random responses to different excitation inputs, encrypts the authentication information sent by the tag, and uses the AES encryption algorithm to encrypt the authentication information between the cloud database and the reader. At the same time, in the authentication process, once the communicating entity completes the identity authentication of the other two entities, it immediately starts to update the key. The security analysis and formal analysis of BAN (proposed by Burrows et al.) logic prove the security and correctness of the protocol. Analysis results show that the computation cost and security performance of the proposed protocol are better than the compared protocols. Our findings will contribute to further enhancing the security for RFID healthcare systems.
机译:射频识别(RFID)技术已融入医疗保健系统,以提高医疗保健管理。但是,人们涉及这种RFID系统的安全和隐私。为了解决基于RFID的医疗保健系统面临的安全问题,设计了一种基于物理不可渗透功能(PUF)和高级加密标准(AES)加密算法的新型安全认证协议。该协议使用PUF技术对不同的激励输入输出唯一和随机响应,加密标签发送的认证信息,并使用AES加密算法加密云数据库和读取器之间的认证信息。同时,在认证过程中,一旦通信实体完成了另外两个实体的身份认证,它就立即开始更新密钥。禁令的安全分析和正式分析(Burrows等)逻辑提出了协议的安全性和正确性。分析结果表明,所提出的协议的计算成本和安全性能优于比较方案。我们的调查结果将有助于进一步提高RFID医疗保健系统的安全。

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