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An Efficient Authentication Protocol for RFID Systems Resistant to Active Attacks

机译:一种有效的认证协议,用于抵抗活动攻击的RFID系统

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RFID technology is a ubiquitous technology, and seems destined to become more a more ubiquitous. Traditional cryptographic primitives are not supported on low-cost RFID tags since, at most, 4K gates can be devoted to security-related tasks. Despite this, there are a vast number of proposals based on the use of classical hash functions, an assumption that is not realistic (at least at the present time). Furthermore, none of the published authentication protocols are resistant to active attacks. We try to address these two issues in this work by designing a new authentication protocol, secure against passive and active attacks, inspired by Shieh et al.'s protocol for smart-cards, but adapted to RFID systems. The original Shieh et al.'s scheme is considered one of the most secure an efficient protocols in the smart-card field. Because in this protocol tags should support a hash-function on-board, a new lightweight hash function, named Tav-128, is also proposed. A preliminary security analysis is shown, as well as a study on its hardware complexity, which concludes that its implementation is possible with around 2.6K gates.
机译:RFID技术是一项普遍存在的技术,似乎注定要更加普遍存在。低成本RFID标签不支持传统的加密原语,因为最多,4K门可以致力于与安全相关的任务。尽管如此,存在基于使用经典哈希函数的大量建议,假设是不现实的(至少在当前时间)。此外,没有任何发布的身份验证协议对主动攻击抵抗。我们尝试通过设计新的身份验证协议来解决这两个问题,以防止被动和活动攻击,这是由Shieh等人的启发。的智能卡的协议,但适用于RFID系统。原始Shieh等人。的计划被认为是智能卡领域中最安全的有效协议之一。由于在本协议标签中,应提出一个支持散列功能的哈希功能,也提出了一个名为TAV-128的新的轻量级散列函数。显示了初步安全性分析,以及对其硬件复杂性的研究,这结论是其实现率约为2.6K门。

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