Improved physical layer collision recovery receivers for RFID readers

J. Kaitovic, M. Rupp
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引用次数: 17

Abstract

Radio Frequency Identification (RFID) systems usually operate in a multiple RFID tag environment. If multiple tags respond simultaneously, a collision occurs and the information is discarded. In this paper, we propose a novel physical layer collision recovery mechanism. We analyse theoretical limits of the inventory time and show how our new method can approach such theoretical maxima. We propose a method that resolves more colliding tags by making collisions less destructive. In this method a postprocessing of the received signal by beamforming is performed. Furthermore, we investigate the influence of the proposed method on the system performance by means of simulations. We show that our method considerably shortens the time necessary to interrogate tags.
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改进的RFID阅读器的物理层碰撞恢复接收器
射频识别(RFID)系统通常在多个RFID标签环境中运行。如果有多个标签同时响应,则会发生冲突,信息被丢弃。本文提出了一种新的物理层碰撞恢复机制。我们分析了库存时间的理论极限,并展示了我们的新方法如何接近这种理论最大值。我们提出了一种方法,通过减少碰撞的破坏性来解决更多的碰撞标签。在这种方法中,通过波束形成对接收信号进行后处理。此外,我们还通过仿真研究了该方法对系统性能的影响。我们表明,我们的方法大大缩短了查询标签所需的时间。
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Improved physical layer collision recovery receivers for RFID readers A low-power RF/analog front-end architecture for LF passive RFID tags with dynamic power sensing Localization of passive UHF RFID tags based on inverse synthetic apertures An inductively coupled passive tag for remote basic volatile sensing An impedance matching method for optical disc-based UHF-RFID tags
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