Department of Electronic Engineering, Dongguk University, 3-26, Pil-dong, Joong-gu, Seoul, Korea.
Sensors (Basel). 2011;11(9):9033-44. doi: 10.3390/s110909033. Epub 2011 Sep 21.
This paper proposes an efficient management system utilizing a Radio Frequency Identification (RFID) antenna control unit which is moving along with the path of boxes of materials on the conveyor belt by manipulating a motor. The proposed antenna control unit, which is driven by a motor and is located on top of the gate, has an array structure of two antennas with parallel connection. The array structure helps improve the directivity of antenna beam pattern and the readable RFID distance due to its configuration. In the experiments, as the control unit follows moving materials, the reading time has been improved by almost three-fold compared to an RFID system employing conventional fixed antennas. The proposed system also has a recognition rate of over 99% without additional antennas for detecting the sides of a box of materials. The recognition rate meets the conditions recommended by the Electronic Product Code glbal network (EPC)global for commercializing the system, with three antennas at a 20 dBm power of reader and a conveyor belt speed of 3.17 m/s. This will enable a host of new RFID conveyor belt gate systems with increased performance.
本文提出了一种利用射频识别(RFID)天线控制单元的高效管理系统,该系统通过操纵电机来沿着传送带上的物料箱的路径移动。所提出的天线控制单元由电机驱动,位于门的顶部,具有两个天线的平行连接的阵列结构。由于其配置,阵列结构有助于提高天线波束模式的指向性和可读的 RFID 距离。在实验中,当控制单元跟随移动的物料时,与使用传统固定天线的 RFID 系统相比,读取时间提高了近三倍。该系统还具有超过 99%的识别率,无需额外的天线来检测物料箱的侧面。在阅读器功率为 20dBm、输送带速度为 3.17m/s 的情况下,该识别率满足了电子产品代码全球网络(EPCglobal)商业化系统的推荐条件。这将使具有更高性能的新型 RFID 输送带门系统成为可能。