无处可藏:隐藏超高频RFID标签的实证研究

Rui Li, H. Ding, Jinsong Han, Shaoping Li, Xing Wang, Hui Liu, Jizhong Zhao
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引用次数: 1

摘要

射频识别(RFID)技术在许多无处不在的应用中得到了广泛的应用。RFID技术最重要的用途是读取读取器询问区域内的标签,以便可以识别与这些标签相连的对象。在实际应用中,由于多径效应和其他干扰,标签在物理上处于询问范围内,但读取器无法读取的情况很常见。这种现象,即隐藏标签问题,是实现高识别率的一大挑战。为了解决这个问题,大多数先前的工作依赖于经验或基于测量的方法来调整读者的传输功率。这种逐案解决方案对于泛型实现是不切实际的。本文从理论和实验两方面探讨了隐藏标签问题产生的原因。为了减轻其影响,我们提出了一个统一的、可测量的模型PAL来描述这个问题及其影响。与以往的工作不同,我们的解决方案是通用的,完全兼容现有的EPC C1G2协议。基于该模型的分析和测量有助于设计和部署具有高识别率的RFID系统。
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Nowhere to hide: An empirical study on hidden UHF RFID tags
Radio Frequency Identification (RFID) techniques are widely used in many ubiquitous applications. The most important usage of RFID techniques is to read the tags within a reader's interrogation area such that the objects attached with those tags can be identified. In real practice, it is common that a tag is physically in the interrogation range, but cannot be read by the reader, due to the multipath effect and other interference. This phenomenon, namely the hidden tag problem, is a big challenge to achieve high identification rate. To address this problem, most prior works depend on empirical or measurement-based methods to tune the transmission power for readers. Such a case-by-case solution is impractical for generic implementation. In this paper, we theoretically and experimentally explore the reasons why hidden tag problem occurs. To alleviate its impact, we propose a unified and measurable model, PAL, to formulate this problem and its impact. Different from previous works, our solution is generic and fully compatible with existing EPC C1G2 protocol. The analysis and measurement based on our model can help to design and deploy RFID systems with high identification rate.
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