Read Accuracy Improvement by R/W Beam Scanning and Repeated Transmission for 920 MHz RFID

Sora Funayama, Y. Yamao
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引用次数: 1

Abstract

Radio Frequency Identification (RFID) has been expected as a promising solution that bring about revolution in the supply chain management. One of the important scenarios is that an RFID system is used for identifying goods in shops and warehouses. For achieving good read accuracy, however, it is necessary to understand indoor radio propagation environment with surrounding materials that reflect radio waves and generate standing waves. In this paper, we analyze RFID read success rate in metal shelf environment through FDTD simulation. In order to reduce the read error, we propose a reader/writer (R/W) beam scanning and repeated transmission scheme with a moving conductor. By displacing the conductor in the vicinity of R/W antennas, receiving power null position caused by the standing waves is moved. Then, read accuracy can be improved by repeated transmission and selection combining. It is confirmed from the simulations that the read rate is greatly improved by the proposed scheme.
920mhz射频识别射频波束扫描和重复传输提高读取精度
无线射频识别(RFID)被认为是一种很有前途的解决方案,它将带来供应链管理的革命。其中一个重要的场景是使用RFID系统来识别商店和仓库中的货物。然而,为了获得良好的读取精度,有必要了解室内无线电传播环境,周围的材料会反射无线电波并产生驻波。本文通过时域有限差分法仿真分析了金属货架环境下RFID的读取成功率。为了减少读取误差,我们提出了一种带移动导体的读写波束扫描和重复传输方案。通过移动天线附近的导体,移动由驻波引起的接收功率零位。然后,通过重复传输和选择相结合,提高读取精度。仿真结果表明,该方案大大提高了读取速率。
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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