Wang Peng, Dong Lihong, Wang Haidou, Li Guolu, Di Yuelan, Xie Xiangyu, Huang Dong
School of Materials Science and Engineering, Hebei University of Technology, Tianjin 300401, China.
National Key Laboratory for Remanufacturing, Army Academy of Armored Forces, Beijing 100072, China.
Sensors (Basel). 2021 Jan 28;21(3):882. doi: 10.3390/s21030882.
The generation and propagation of cracks are critical factors that affect the performance and life of large structures. Therefore, in order to minimize maintenance costs and ensure personal safety, it is necessary to monitor key structures. The sensor based on ultra-high frequency radio frequency identification (UHF RFID) antenna has the advantages of passive wireless, low cost, and great potential in the field of metallic structure health monitoring. In this paper, aimed at the key parts of a metallic structure, a dual-tag system is used for crack monitoring. In conjunction with mode analysis, the principles of the sensing tag and the coupling principles of the dual-tag are analyzed. Considering that the dual-tag is placed in different methods, the effect of mutual coupling on the sensing performance of the tag is studied. The results show that the frequency of the sensing tag can be tuned by adding the interference tag, and the dual-tag sensor system has reasonable sensitivity. The results also provide potential guidance for the optimal placement of multiple tags in the near-field region.
裂纹的产生与扩展是影响大型结构性能和寿命的关键因素。因此,为了将维护成本降至最低并确保人身安全,对关键结构进行监测很有必要。基于超高频射频识别(UHF RFID)天线的传感器具有无源无线、成本低等优点,在金属结构健康监测领域具有巨大潜力。本文针对金属结构的关键部位,采用双标签系统进行裂纹监测。结合模态分析,分析了传感标签的原理以及双标签的耦合原理。考虑到双标签的放置方式不同,研究了相互耦合对标签传感性能的影响。结果表明,通过添加干扰标签可以调谐传感标签的频率,双标签传感器系统具有合理的灵敏度。研究结果还为近场区域多个标签的优化布置提供了潜在指导。