Mikami Shugo, Watanabe Dai, Li Yang, Sakiyama Kazuo
Hitachi Ltd., Research & Development Group, Center for Technology Innovation-Systems Engineering, 292 Yoshida-cho, Totsuka-ku, Yokohama, Kanagawa 244-0817, Japan ; Department of Informatics, The University of Electro-Communications, 1-5-1 Chofugaoka, Chofu, Tokyo 182-8585, Japan.
Hitachi Ltd., Research & Development Group, Center for Technology Innovation-Systems Engineering, 292 Yoshida-cho, Totsuka-ku, Yokohama, Kanagawa 244-0817, Japan.
ScientificWorldJournal. 2015;2015:498610. doi: 10.1155/2015/498610. Epub 2015 Sep 29.
Passive radio-frequency identification (RFID) tag has been used in many applications. While the RFID market is expected to grow, concerns about security and privacy of the RFID tag should be overcome for the future use. To overcome these issues, privacy-preserving authentication protocols based on cryptographic algorithms have been designed. However, to the best of our knowledge, evaluation of the whole tag, which includes an antenna, an analog front end, and a digital processing block, that runs authentication protocols has not been studied. In this paper, we present an implementation and evaluation of a fully integrated passive UHF RFID tag that runs a privacy-preserving mutual authentication protocol based on a hash function. We design a single chip including the analog front end and the digital processing block. We select a lightweight hash function supporting 80-bit security strength and a standard hash function supporting 128-bit security strength. We show that when the lightweight hash function is used, the tag completes the protocol with a reader-tag distance of 10 cm. Similarly, when the standard hash function is used, the tag completes the protocol with the distance of 8.5 cm. We discuss the impact of the peak power consumption of the tag on the distance of the tag due to the hash function.
无源射频识别(RFID)标签已在许多应用中得到使用。虽然预计RFID市场将会增长,但要实现其未来的广泛应用,必须克服对RFID标签安全性和隐私性的担忧。为解决这些问题,人们设计了基于加密算法的隐私保护认证协议。然而,据我们所知,尚未对运行认证协议的包含天线、模拟前端和数字处理模块的整个标签进行评估。在本文中,我们展示了一种完全集成的无源超高频RFID标签的实现与评估,该标签运行基于哈希函数的隐私保护相互认证协议。我们设计了一款包含模拟前端和数字处理模块的单芯片。我们选择了支持80位安全强度的轻量级哈希函数和支持128位安全强度的标准哈希函数。我们表明,当使用轻量级哈希函数时,标签在与读取器的距离为10厘米时完成协议。同样,当使用标准哈希函数时,标签在距离为8.5厘米时完成协议。我们讨论了由于哈希函数导致的标签峰值功耗对标签距离的影响。