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应用于为射频识别标签供电的平面热电微型发电机。

Planar Thermoelectric Microgenerators in Application to Power RFID Tags.

作者信息

Dziedzic Andrzej, Wójcik Szymon, Gierczak Mirosław, Bernik Slavko, Brguljan Nana, Reinhardt Kathrin, Körner Stefan

机构信息

Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.

Jožef Stefan Institute, Jamova cesta 39, 1000 Ljubljana, Slovenia.

出版信息

Sensors (Basel). 2024 Mar 2;24(5):1646. doi: 10.3390/s24051646.

Abstract

This paper presents an innovative approach to the integration of thermoelectric microgenerators (μTEGs) based on thick-film thermopiles of planar constantan-silver (CuNi-Ag) and calcium cobaltite oxide-silver (CaCoO-Ag) thick-film thermopiles with radio frequency identification (RFID) technology. The goal was to consider using the TEG for an active or semi-passive RFID tag. The proposed implementation would allow the communication distance to be increased or even operated without changing batteries. This article discusses the principles of planar thermoelectric microgenerators (μTEGs), focusing on their ability to convert the temperature difference into electrical energy. The concept of integration with active or semi-passive tags is presented, as well as the results of energy efficiency tests, considering various environmental conditions. On the basis of the measurements, the parameters of thermopiles consisting of more thermocouples were simulated to provide the required voltage and power for cooperation with RFID tags. The conclusions of the research indicate promising prospects for the integration of planar thermoelectric microgenerators with RFID technology, opening the way to more sustainable and efficient monitoring and identification systems. Our work provides the theoretical basis and practical experimental data for the further development and implementation of this innovative technology.

摘要

本文提出了一种创新方法,将基于平面康铜 - 银(CuNi - Ag)和钙钴矿氧化物 - 银(CaCoO - Ag)厚膜热电堆的热电微型发电机(μTEG)与射频识别(RFID)技术集成。目标是考虑将TEG用于有源或半无源RFID标签。所提出的实施方案将允许增加通信距离,甚至在不更换电池的情况下运行。本文讨论了平面热电微型发电机(μTEG)的原理,重点关注其将温差转化为电能的能力。介绍了与有源或半无源标签集成的概念,以及考虑各种环境条件下的能量效率测试结果。基于这些测量,对由更多热电偶组成的热电堆参数进行了模拟,以提供与RFID标签配合所需的电压和功率。研究结论表明,平面热电微型发电机与RFID技术集成具有广阔前景,为更可持续、高效的监测和识别系统开辟了道路。我们的工作为这项创新技术的进一步发展和实施提供了理论基础和实际实验数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dc1/10934605/dbb344bc85f2/sensors-24-01646-g001.jpg

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