Battery-free wireless sensors for industrial applications based on UHF RFID technology

I. Zalbide, E. d'Entremont, Ainara Jimenez, H. Solar, A. Beriain, R. Berenguer
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引用次数: 32

Abstract

This work provides an overview of the current state-of-the-art of the RFID technology in the Wireless Sensor Network (WSN) field. The different RFID alternatives are described with their pros and cons. The benefits and limitations of battery-free wireless sensors based on RFID technology are presented. Subsequently, the paper describes the design of an UHF RFID integrated circuit (IC) designed to harvest and store the power from an incoming RF signal in order to supply low power analog or digital sensors. The IC has been implemented using a low cost 0.35 μm CMOS process and it incorporates a serial peripheral interface (SPI) in order to communicate with the sensor. Battery-free wireless operation for industrial monitoring using the designed IC has been demonstrated by implementing two wireless sensors that monitor both temperature, using a thermistor, and pressure, using a commercial digital sensor. The wireless temperature sensor shows an error below ±1°C from -25°C to 105°C, whereas the pressure sensor error is below ±2 mbar from 325 to 1000 mbar. A battery free communication range of 1.5 meters is demonstrated for both sensors using a 2-W effective radiated output power reader.
基于超高频RFID技术的工业应用无电池无线传感器
这项工作概述了无线传感器网络(WSN)领域中RFID技术的最新进展。介绍了不同的RFID替代方案及其优缺点,并介绍了基于RFID技术的无电池无线传感器的优点和局限性。随后,本文介绍了一种超高频射频识别集成电路(IC)的设计,该电路旨在从输入的射频信号中收集和存储功率,以提供低功耗模拟或数字传感器。该IC采用低成本的0.35 μm CMOS工艺实现,并集成了串行外设接口(SPI),以便与传感器通信。通过实现两个无线传感器,使用热敏电阻监测温度,使用商业数字传感器监测压力,已经演示了使用设计的IC进行工业监测的无电池无线操作。无线温度传感器在-25℃~ 105℃范围内误差小于±1℃,压力传感器在325 ~ 1000mbar范围内误差小于±2mbar。使用2w有效辐射输出功率读取器的两个传感器的无电池通信范围为1.5米。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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