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STPP: Spatial-Temporal Phase Profiling-Based Method for Relative RFID Tag Localization

机译:STPP:基于时空相位分析的相对RFID标签定位方法

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Many object localization applications need the relative locations of a set of objects as oppose to their absolute locations. Although many schemes for object localization using radio frequency identification (RFID) tags have been proposed, they mostly focus on absolute object localization and are not suitable for relative object localization because of large error margins and the special hardware that they require. In this paper, we propose an approach called spatial-temporal phase profiling (STPP) to RFID-based relative object localization. The basic idea of STPP is that by moving a reader over a set of tags during which the reader continuously interrogating the tags, for each tag, the reader obtains a sequence of RF phase values, which we call a phase profile, from the tag’s responses over time. By analyzing the spatial-temporal dynamics in the phase profiles, STPP can calculate the spatial ordering among the tags. In comparison with prior absolute object localization schemes, STPP requires neither dedicated infrastructure nor special hardware. We implemented STPP and evaluated its performance in two real-world applications: locating misplaced books in a library and determining the baggage order in an airport. The experimental results show that STPP achieves about 84% ordering accuracy for misplaced books and 95% ordering accuracy for baggage handling. We further leverage the controllable reader antenna and upgrade STPP to infer the spacing between each pair of tags. The result shows that STPP could achieve promising performance on distance ranging.
机译:许多对象本地化应用程序需要一组对象的相对位置,而不是它们的绝对位置。尽管已经提出了许多使用射频识别(RFID)标签进行对象定位的方案,但是它们大多集中在绝对对象定位上,由于存在较大的误差范围和所需的特殊硬件,因此不适合相对对象定位。在本文中,我们提出了一种称为基于RFID的相对对象定位的时空相位分析(STPP)方法。 STPP的基本思想是,通过将阅读器移到一组标签上,在此期间,阅读器不断询问标签,对于每个标签,阅读器从标签的响应中获得一系列RF相位值,我们称其为相位曲线。随着时间的推移。通过分析相位剖面中的时空动态,STPP可以计算标签之间的空间顺序。与先前的绝对对象本地化方案相比,STPP既不需要专用的基础结构,也不需要专用的硬件。我们实施了STPP,并在两个实际应用中评估了它的性能:在图书馆中查找放错地方的书和在机场确定行李的顺序。实验结果表明,对于错放的书籍,STPP的订购精度约为84%,对于行李处理的订购精度约为95%。我们进一步利用可控的阅读器天线并升级STPP来推断每对标签之间的间距。结果表明,STPP可以在远距离测距中取得良好的性能。

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