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Efficient protocol design for dynamic tag population monitoring in large-scale radio frequency identification systems

机译:大型射频识别系统中动态标签数量监控的高效协议设计

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摘要

As radio frequency identification (RFID) tags become more ubiquitously available, they will stay in dynamic environments where tags can freely enter or leave RFID readers' interrogation range. With such a dynamic tag population, there arises a problem of population monitoring, whose purpose is to identify the missing tags that have departed from the reading range and the new tags that have newly entered. This problem is a new problem which cannot be well solved by the conventional tag identification protocols. In this paper, we first show that this traditional approach is inefficient, because it collects all the tag IDs in each scan and ignores the ready-for-use knowledge of the tag population in a previous scan. To be more efficient, we present three protocols: (ⅰ) a baseline protocol that improves the traditional tag identification protocol by optimizing its length of random number used for collision detection; (ⅱ) a novel one-phase protocol with easy labor to identify exactly the new tags and the missing tags by fully utilizing the knowledge of previous tag population; and (ⅲ) a hybrid protocol that smartly combines the baseline protocol and the one-phase protocol. Its purpose is to deal with the situation that the knowledge of previous tag population is highly inconsistent with the current tag population. This hybrid protocol, as shown by our analysis, can improve the tag monitoring accuracy by 25%, and improve the time efficiency by 55.3%, as compared with a recent work (called two-phase protocol), which also identifies the population changes.
机译:随着射频识别(RFID)标签变得越来越普遍,它们将停留在动态环境中,标签可以自由进入或离开RFID阅读器的询问范围。在这样的动态标签种群中,出现了种群监视的问题,其目的是识别偏离阅读范围的丢失标签和新进入的新标签。该问题是常规标签识别协议无法很好解决的新问题。在本文中,我们首先证明了这种传统方法的效率低下,因为它会在每次扫描中收集所有标签ID,而在上一次扫描中会忽略标签总数的现成可用知识。为了提高效率,我们提出了三种协议:(ⅰ)一种基线协议,通过优化用于冲突检测的随机数的长度来改进传统标签识别协议; (ⅱ)一种新颖的单阶段协议,易于工作,可以通过充分利用先前标签的知识来准确识别新标签和缺失标签; (ⅲ)一种将基础协议和单阶段协议巧妙地结合在一起的混合协议。其目的是要解决以下情况:以前的标记种群的知识与当前的标记种群高度不一致。正如我们的分析所示,与最近的工作(称为两阶段协议)相比,这种混合协议可以将标签监控准确性提高25%,并将时间效率提高55.3%,该工作也可以识别种群变化。

著录项

  • 来源
    《Concurrency and Computation》 |2013年第14期|2080-2097|共18页
  • 作者单位

    Department of Computing, The Hong Kong Polytechnic University, Hong Kong, China Institute of Software, Chinese Academy of Sciences, Beijing, China;

    Department of Computing, The Hong Kong Polytechnic University, Hong Kong, China Institute of Software, Chinese Academy of Sciences, Beijing, China;

    Department of Computing, The Hong Kong Polytechnic University, Hong Kong, China Institute of Software, Chinese Academy of Sciences, Beijing, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ubiquitous computing; RFID; dynamic tag population; tag population monitoring;

    机译:普适计算;RFID;动态标签数量;标签数量监控;

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