School of Information Engineering, Southwest University of Science and Technology, Mianyang 621010, China.
Sensors (Basel). 2021 Dec 12;21(24):8314. doi: 10.3390/s21248314.
In this paper, the multiple-input, multiple-output (MIMO) radar signal processing algorithm is efficiently employed as an anticollision methodology for the identification of multiple chipless radio-frequency identification (RFID) tags. Tag-identifying methods for conventional chipped RFID tags rely mostly on the processing capabilities of application-specific integrated circuits (ASICs). In cases where more than one chipless tag exists in the same area, traditional methods are not sufficient to successfully read and distinguish the IDs, while the direction of each chipless tag can be obtained by applying MIMO technology to the backscattering signal. In order to read the IDs of the tags, beamforming is used to change the main beam direction of the antenna array and to receive the tag backscattered signal. On this basis, the RCS of the tags can be retrieved, and associated IDs can be identified. In the simulation, two tags with different IDs were placed away from each other. The IDs of the tags were successfully identified using the presented algorithm. The simulation result shows that tags with a distance of 0.88 m in azimuth can be read by a MIMO reader with eight antennas from 3 m away.
本文将多输入多输出(MIMO)雷达信号处理算法有效地应用于多片无芯片射频识别(RFID)标签的识别防撞方法中。传统有芯片 RFID 标签的标签识别方法主要依赖于专用集成电路(ASIC)的处理能力。在同一区域存在多个无芯片标签的情况下,传统方法不足以成功读取和区分 ID,而通过将 MIMO 技术应用于反向散射信号,可以获得每个无芯片标签的方向。为了读取标签的 ID,波束成形用于改变天线阵列的主波束方向并接收标签反向散射信号。在此基础上,可以检索标签的 RCS,并识别相关 ID。在仿真中,放置了两个具有不同 ID 的标签。使用提出的算法成功识别了标签的 ID。仿真结果表明,距离为 0.88 m 的标签可以通过距离为 3 m 的 8 天线 MIMO 读取器读取。