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Zero-Knowledge Authentication Protocol Based on Alternative Mode in RFID Systems

机译:RFID系统中基于替代模式的零知识认证协议

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摘要

As radio frequency identification (RFID) applications become ubiquitous, security and privacy issues have been addressed with universal acceptances. This paper proposes a lightweight Zero-Knowledge Authentication Protocol (ZKAP) based on alternative mode to address such severe problems. In ZKAP, dual zero-knowledge proofs are randomly chosen to provide anonymity and mutual authentication without revealing any sensitive identifiers. Pseudo-random flags and access lists employed for quick search and check ensure high efficiency and scalability. Meanwhile, formal proof model based on reasonable mathematical assumptions is established to prove the adaptive completeness, soundness and zero-knowledgeness, and the attack models are adopted to analyze the resilience and resistance for malicious attacks. It indicates that ZKAP owns no obvious design defects theoretically and is robust enough to resist major attacks (e.g., forgery, replay, Man-in-the-Middle, and tracking). The protocol is attractive and appropriate for low-cost and resource-restricted RFID systems.
机译:随着射频识别(RFID)应用变得无处不在,安全性和隐私问题已被普遍接受。本文提出了一种基于替代模式的轻量级零知识认证协议(ZKAP),以解决此类严重问题。在ZKAP中,随机选择双重零知识证明以提供匿名性和相互认证,而不会透露任何敏感标识符。用于快速搜索和检查的伪随机标志和访问列表可确保高效和可伸缩性。同时,建立了基于合理数学假设的形式化证明模型,以证明其自适应性,完整性和零知识性,并采用攻击模型来分析恶意攻击的弹性和抵抗力。它表明ZKAP在理论上没有明显的设计缺陷,并且足够强大以抵抗重大攻击(例如,伪造,重播,中间人攻击和跟踪)。该协议具有吸引力,适用于低成本且资源受限的RFID系统。

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