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首页> 外文期刊>Antennas and Wireless Propagation Letters, IEEE >Accurate Phase-Based Ranging Measurements for Backscatter RFID Tags
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Accurate Phase-Based Ranging Measurements for Backscatter RFID Tags

机译:反向散射RFID标签的基于相位的准确测距测量

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摘要

Short-distance, millimeter-level ranging based on backscatter RF tags remains a challenge today. We propose a composite dual-frequency continuous-wave and continuous-wave (DFCW/CW) radar system for localization of backscatter RF tags. The coarse DFCW range result is used to correct the cycle ambiguity of the more accurate CW range result. A minimum mean square error (MMSE)-based method is employed to combine the DFCW and CW ranging data, given spectrum constraints. The composite radar concept is demonstrated with a custom 5.8-GHz backscatter RF tag system in a typical indoor laboratory environment with a strong line-of-sight (LOS). Results show that the MMSE technique can resolve the CW cycle ambiguity for a moving tag and results in a range error of approximately 1 mm after an acquisition period.
机译:如今,基于反向散射射频标签的短距离毫米级测距仍然是一个挑战。我们提出了一种复合双频连续波和连续波(DFCW / CW)雷达系统,用于定位反向散射RF标签。粗略的DFCW范围结果用于校正更准确的CW范围结果的周期歧义。在给定频谱约束的情况下,采用基于最小均方误差(MMSE)的方法来组合DFCW和CW测距数据。在具有强视线(LOS)的典型室内实验室环境中,使用定制的5.8 GHz反向散射RF标签系统演示了复合雷达概念。结果表明,MMSE技术可以解决移动标签的CW循环歧义问题,并在采集周期后导致约1 mm的范围误差。

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