RFID cardinality estimation with blocker tags

Xiulong Liu, Bin Xiao, Keqiu Li, Jie Wu, A. Liu, Heng Qi, Xin Xie
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引用次数: 33

Abstract

The widely used RFID tags impose serious privacy concerns as a tag responds to queries from readers no matter they are authorized or not. The common solution is to use a commercially available blocker tag which behaves as if a set of tags with known blocking IDs are present. The use of blocker tags makes RFID estimation much more challenging as some genuine tag IDs are covered by the blocker tag and some are not. In this paper, we propose REB, the first RFID estimation scheme with the presence of blocker tags. REB uses the framed slotted Aloha protocol specified in the C1G2 standard. For each round of the Aloha protocol, REB first executes the protocol on the genuine tags and the blocker tag, and then virtually executes the protocol on the known blocking IDs using the same Aloha protocol parameters. The basic idea of REB is to conduct statistically inference from the two sets of responses and estimate the number of genuine tags. We conduct extensive simulations to evaluate the performance of REB, in terms of time-efficiency and estimation reliability. The experimental results reveal that our REB scheme runs tens of times faster than the fastest identification protocol with the same accuracy requirement.
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拦阻标签的RFID基数估计
广泛使用的RFID标签带来了严重的隐私问题,因为标签响应来自读取器的查询,无论他们是否授权。常见的解决方案是使用商业上可用的拦截器标签,它的行为就好像存在一组已知拦截id的标签。拦截标签的使用使RFID估计更具挑战性,因为一些真正的标签id被拦截标签覆盖,而一些则没有。在本文中,我们提出了REB,这是第一个存在拦截标签的RFID估计方案。REB使用C1G2标准中指定的框架开槽Aloha协议。对于每一轮Aloha协议,REB首先在真实标签和blocker标签上执行协议,然后使用相同的Aloha协议参数在已知的阻塞id上虚拟执行协议。REB的基本思想是从两组响应中进行统计推断,估计正品标签的数量。我们进行了大量的模拟来评估REB的性能,在时间效率和估计可靠性方面。实验结果表明,在相同精度要求下,我们的REB方案比目前最快的识别方案快几十倍。
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