首页> 外文期刊>IEEE transactions on mobile computing >Tagspin: High Accuracy Spatial Calibration of RFID Antennas via Spinning Tags
【24h】

Tagspin: High Accuracy Spatial Calibration of RFID Antennas via Spinning Tags

机译:Tagspin:通过旋转标签对RFID天线进行高精度空间校准

获取原文
获取原文并翻译 | 示例

摘要

Recent years have witnessed the advance of RFID-based localization techniques that demonstrate high precision. Many efforts have been made locating RFID tags accurately with a mandatory assumption that the RFID reader's position is known in advance. Unfortunately, calibrating reader's location manually is always time-consuming and laborious in practice. In this paper, we present Tagspin, an approach using COTS tags to pinpoint the reader (antenna) quickly and easily with high accuracy. Tagspin enables each tag to emulate a circular antenna array by uniformly spinning on the edge of a rotating disk. We design an SAR-based method for estimating the angle spectrum of the target reader. Compared to previous AoA-based techniques, we employ an enhanced power profile modeling the relative signal power received from the reader along different spatial directions, which is more accurate and immune to ambient noise as well as measurement errors caused by hardware characteristics. Besides, we find that tag's phase measurements in practice are related to itsnorientationn. To the best of our knowledge, we are the first to point out this fact and quantify the relationship between them. By calibrating the phase shifts caused by orientation, the positioning accuracy can be improved byn$3.7times$n. We have implemented Tagspin with COTS RFID devices and evaluated it extensively. Experimental results show that Tagspin achieves mean accuracy ofn$7.3; mathrm{cm}$nwith standard deviation ofn$1.8; mathrm{cm}$nin 3D space.
机译:近年来,目睹了基于RFID的定位技术的进步,这些技术显示出了很高的精度。在必须预先知道RFID读取器位置的强制性前提下,已经进行了许多努力来精确地定位RFID标签。不幸的是,在实践中,手动校准阅读器的位置总是很费时且费力的。在本文中,我们介绍了Tagspin,这是一种使用COTS标签来快速,轻松,高精度地精确定位阅读器(天线)的方法。 Tagspin通过在旋转磁盘的边缘上均匀旋转来使每个标签模拟圆形天线阵列。我们设计了一种基于SAR的方法来估计目标阅读器的角度光谱。与以前的基于AoA的技术相比,我们采用了增强的功率曲线,可以对沿不同空间方向从阅读器接收到的相对信号功率进行建模,从而更加准确,并且不受环境噪声以及硬件特性引起的测量误差的影响。此外,我们发现标签的相位测量实际上与标签的n 方向。据我们所知,我们是第一个指出这一事实并量化它们之间关系的人。通过校准由方向引起的相移,可以通过以下方法提高定位精度:n $ 3.7×$ n。我们已经在COTS RFID设备中实现了Tagpin,并对其进行了广泛的评估。实验结果表明,Tagspin的平均准确度达到n $ 7.3; mathrm {cm} $ n,标准差为n $ 1.8; mathrm {cm} $ nin 3D空间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号