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A Multiantenna RFID Reader With Blind Adaptive Beamforming

机译:具有盲自适应波束形成的多天线RFID阅读器

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摘要

A passive ultra-high frequency (UHF) RF identification (RFID) system is proposed that employs multiple antennas at the reader and single antenna at each tag. The gain due to multiple antennas in terms of the maximum reader interrogation range is first quantified. Then, a blind adaptive beamforming (BABF) algorithm that does not require the channel state information (CSI) is presented to improve both the interrogation range and the data transmission performance of the system in both the full- and half-duplex configurations. Moreover, an estimator for the number of tags within the reader interrogation range is proposed to enhance the system throughput. Simulation results show that both the interrogation range and the packet error rate (PER) performance for data transmission can be improved significantly using multiple antennas at the reader. A Universal Software Radio Peripheral (USRP)-based prototype system is implemented to validate the interrogation range improvement by employing multiple-antenna readers with several beamforming schemes. The proposed multiantenna RFID reader with the BABF complies with the existing RFID standard and can be readily implemented in existing systems.
机译:提出了一种无源超高频(UHF)RF识别(RFID)系统,该系统在读取器上使用多个天线,在每个标签上使用单个天线。首先,就最大阅读器询问范围而言,归因于多个天线的增益。然后,提出了一种不需要信道状态信息(CSI)的盲自适应波束成形(BABF)算法,以提高全双工和半双工配置中系统的询问范围和数据传输性能。此外,提出了一种用于在阅读器询问范围内的标签数量的估计器,以提高系统吞吐量。仿真结果表明,使用读取器上的多个天线,可以显着提高数据传输的询问范围和误包率(PER)性能。实现了一种基于通用软件无线电外围设备(USRP)的原型系统,以通过使用具有几种波束成形方案的多天线读取器来验证询问范围的改进。所提出的带有BABF的多天线RFID阅读器符合现有的RFID标准,并且可以在现有系统中轻松实现。

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