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首页> 外文期刊>Journal of ambient intelligence and smart environments >R-LABS: An RFID-based indoor localisation system using antenna beam scanning
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R-LABS: An RFID-based indoor localisation system using antenna beam scanning

机译:R-LABS:使用天线波束扫描的基于RFID的室内定位系统

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摘要

In this paper, we propose an indoor localisation system using radio frequency identification (RFID) technology. Locations of passive RFID tags are determined by scanning multiple RFID reader antennas' radiation beams. During each scan, the horizontal and elevation angles of the reader antenna are recorded when the transition of a tag entering or leaving the antenna beam's coverage area occurs, and this angle information is used in the developed algorithm to calculate the tag's location. The proposed system requires a minimum of two reader antennas, without the need for reference tags. In order to mitigate the multipath impact on the localisation accuracy and system coverage, an improved algorithm is also developed. Simulations are performed for a typical small indoor environment and validated by experiments using ultra-high frequency (UHF) RFID devices. The results demonstrate that for effective operations of the proposed system, directive antennas are necessary, and systems using antennas with narrower beam widths provide a higher localisation accuracy.
机译:在本文中,我们提出了一种使用射频识别(RFID)技术的室内定位系统。无源RFID标签的位置是通过扫描多个RFID阅读器天线的辐射束来确定的。在每次扫描期间,当标签进入或离开天线波束的覆盖区域时,都会记录读取器天线的水平和仰角,并且在开发的算法中使用此角度信息来计算标签的位置。所提出的系统至少需要两个阅读器天线,而无需参考标签。为了减轻多径对定位精度和系统覆盖范围的影响,还开发了一种改进的算法。针对典型的小型室内环境进行仿真,并通过使用超高频(UHF)RFID设备的实验进行了验证。结果表明,为使​​所提出系统有效运行,必须使用定向天线,并且使用波束宽度较窄的天线的系统可提供更高的定位精度。

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