论文标题

被动UHF-RFID标签的基于阶段的变体最大似然定位

Phase-based Variant Maximum Likelihood Positioning for Passive UHF-RFID Tags

论文作者

Li, Chenglong, Tanghe, Emmeric, Plets, David, Suanet, Pieter, Podevijn, Nico, Hoebeke, Jeroen, De Poorter, Eli, Martens, Luc, Joseph, Wout

论文摘要

射频识别(RFID)技术在供应链和智能库存管理方面带来了巨大进步。与基于信号强度的方法相比,基于阶段的被动超高频RFID标签定位对传播环境不敏感和标记的对象性能,引起了极大的兴趣。在本文中,提出了基于阶段的最大样品标签定位估计。为了减轻相位不确定性,可能通过三角转换重建了可能性函数。构建权重以减少意外干扰的影响并增加定位性能。实验结果表明,所提出的算法实现了精细的TAG定位,可实现厘米级的横向精度,并且沿架子高度的垂直精度少于15厘米。

Radio frequency identification (RFID) technology brings tremendous advancement in Internet-of-Things, especially in supply chain and smart inventory management. Phase-based passive ultra high frequency RFID tag localization has attracted great interest, due to its insensitivity to the propagation environment and tagged object properties compared with the signal strength based method. In this paper, a phase-based maximum-likelihood tag positioning estimation is proposed. To mitigate the phase uncertainty, the likelihood function is reconstructed through trigonometric transformation. Weights are constructed to reduce the impact of unexpected interference and to augment the positioning performance. The experiment results show that the proposed algorithms realize fine-grained tag localization, which achieve centimeter-level lateral accuracy, and less than 15-centimeters vertical accuracy along the altitude of the racks.

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