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Redundant Bit Security in RFIDs: Architecture Design and Security Performance Evaluation

机译:RFID中的冗余位安全性:体系结构设计和安全性能评估

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摘要

This paper presents an analysis of the security performance and evaluation of the hardware architecture of the redundant bit security (RBS) cryptosystem. RBS is a lightweight symmetric encryption algorithm that targets resource-constrained RFID devices. Unlike the existing cryptosystems, RBS simultaneously provides confidentiality, authentication, and integrity of the plaintext by inserting hash-generated redundant bits among the already modified plaintext data. A flexible-length hash algorithm in our optimized hardware architecture allows RBS to support different key sizes which allows flexibility in the security level. Our analysis shows the resilience of RBS against powerful and well-known attacks such as differential attacks and known-plaintext attacks. We compare the performance of the RBS cryptosystem against other distinguished ciphers developed for RFID systems. Simulation results show that RBS results in approximately 100%, 239%, and 153% higher hardware efficiencies while requiring 48%, 56%, and 59% less energy-per-bit compared to H-PRESENT, HB-2, and Grain, respectively. Such results present confirmatory evidence that RBS is a superior solution for providing security in resource-constrained systems such as RFID systems especially when authentication is a priority.
机译:本文对安全性能进行了分析,并对冗余比特安全(RBS)密码系统的硬件体系结构进行了评估。 RBS是针对资源受限的RFID设备的轻量级对称加密算法。与现有的密码系统不同,RBS通过在已修改的明文数据之间插入哈希生成的冗余位,同时提供明文的机密性,身份验证和完整性。我们优化的硬件体系结构中的灵活长度哈希算法允许RBS支持不同的密钥大小,从而在安全级别上具有灵活性。我们的分析表明,RBS可以抵抗强大的众所周知的攻击,例如差分攻击和已知明文攻击。我们将RBS密码系统的性能与为RFID系统开发的其他杰出密码进行了比较。仿真结果表明,与H-PRESENT,HB-2和Grain相比,RBS的硬件效率大约提高了100%,239%和153%,而每位能量的需求却降低了48%,56%和59%,分别。这样的结果提供了验证性的证据,证明RBS是一种在资源受限的系统(例如RFID系统)中提供安全性的出色解决方案,尤其是在优先考虑身份验证时。

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