Robust localization of passive UHF RFID tag arrays based on phase-difference-of-arrival evaluation

M. Scherhaufl, M. Pichler, A. Stelzer
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引用次数: 8

Abstract

This paper introduces a robust 2D localization system for passive UHF RFID transponders based on phase evaluation where no calibration is required. To handle the ambiguity caused by phase measurement, several transponders are arranged to form a uniform linear array whose position is estimated simultaneously with its orientation based on phase-difference-of-arrival evaluation. A MIMO system where paths take turns to act as transmitter with the remaining paths serving as receivers is used to enable the position estimation. For proof of concept, a local position measurement system demonstrator comprising a commercial off-the-shelf RFID reader, conventional passive EPCglobal Class-1 Gen-2 UHF RFID tags, several transceivers, baseband hardware, and signal processing was built. Measurements were carried out in an indoor office environment, and the experimental results showed robust localization with a root-mean-square deviation of 0.10 m.
基于到达相位差评估的无源UHF RFID标签阵列鲁棒定位
介绍了一种基于相位评估的无源超高频RFID应答器鲁棒二维定位系统,该系统无需校准。为了解决相位测量产生的模糊问题,将多个应答器排列成一个均匀的线性阵列,根据到达相位差评估同时估计其位置和方向。在MIMO系统中,路径轮流充当发射器,其余路径充当接收器,用于实现位置估计。为了验证概念,构建了一个本地位置测量系统演示器,包括商用现成的RFID读取器,传统的无源EPCglobal Class-1 Gen-2 UHF RFID标签,几个收发器,基带硬件和信号处理。在室内办公环境中进行了测量,实验结果显示了稳健的定位,均方根偏差为0.10 m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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