Compact Chipless RFID Sensor for Frozen Food Monitoring

无芯片射频识别 计算机科学 声学 射频识别 物理 计算机安全
作者
Cong Danh Bui,Aidan J. Quinn,Daniela Iacopino,Adam Narbudowicz
出处
期刊:IEEE Sensors Journal [Institute of Electrical and Electronics Engineers]
卷期号:24 (9): 14205-14212 被引量:9
标识
DOI:10.1109/jsen.2024.3378678
摘要

Chipless RFID sensor is currently one of the most promising sensor designs, especially in food safety sector, because it has a robust structure and is inexpensive for mass production. This paper proposes a simple, compact, and low-cost chipless RFID sensor tag for frozen food monitoring. The system consists of an interrogator antenna, which is an antipodal Vivaldi antenna, and a chipless RFID sensor tag inside a flat container that contains a small quantity of ice. When receiving power from the interrogator antenna, the sensor alters the frequency of the reflected signal if the ice melts. One of three states of the material in the container can be detected, i.e. ice, water, and air (empty container). The peak of the frequency response exhibits distinctively narrow 3-dB bandwidth of 35 - 49 MHz, allowing multiple sensors to operate simultaneously within limited bandwidth and space; Peak center frequency is observed at 751 MHz or 838 MHz, for respectively ice and air, with no peak present for water. The system is simulated, analysed, and verified by measuring in free open space in a realistic environment. The measurement for ice melting over time is also measured and shown that frequencies of the peaks are slowly decreasing during the first 10 minutes after defrost and completely disappears after 15 minutes. The resonant peak reappears at 826 MHz after the tag is completely dry. A good tolerance to the background is also found when complex dielectric material is placed next to the sensor.
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