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Sensing -oriented RFID tag Response in High Temperature Conditions

机译:高温条件下面向传感的RFID标签响应

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摘要

Sensing and communication performances of RFID tags subjected to high temperature stress are here experimentally investigated with the aim of assessing the effective operability of conventional RFID technology in Industry 4.0 scenarios. Three popular microchips embedded into dipole tags have been tested. Results suggest that while the maximum communication ranges sensibly reduce as the temperature increases, the temperature measurements returned by the RFID on-chip sensors look rather robust up to 110°C and even up to 130°C provided that a linear calibration is applied. However, in case of external sensors connected to the IC, the response curve becomes non-linear thus lowering the maximum operative temperature and a more complex correction is required.
机译:本文通过实验研究了承受高温压力的RFID标签的传感和通信性能,目的是评估传统RFID技术在工业4.0场景中的有效可操作性。已测试了嵌入偶极子标签中的三种流行的微芯片。结果表明,尽管最大通信范围会随着温度的升高而明显减小,但如果应用了线性校准,RFID片上传感器返回的温度测量值在高达110°C甚至高达130°C的条件下看起来都非常可靠。但是,在将外部传感器连接到IC的情况下,响应曲线变为非线性,从而降低了最高工作温度,并且需要更复杂的校正。

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