超高频RFID系统无源供电、可编程传感平台的设计

A. Sample, D. Yeager, P.S. Powledge, Joshua R. Smith
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引用次数: 224

摘要

本文提出了一种无线、无电池的传感和计算平台,该平台由符合标准的超高频(UHF)射频识别(RFID)阅读器供电和读取。WISP(无线识别和传感平台)包括一个完全可编程的16位微控制器和模数转换器。微控制器固件实现电子产品代码(EPC)第1类第1代协议的部分。在查询时,平台通过模拟EPC标签来通信任意传感器数据,EPC标签的ID对所需传感器数据进行编码;所需的16位CRC由微控制器动态计算。RFID阅读器将接收到的标签ID报告给应用软件,应用软件可以解释标签ID中包含的信息。WISP的可编程性及其作为PCB的实现允许灵活集成任意低功耗传感器。此外,传感器也完全由RFID读取器供电,从而形成完全无电池的设备。到目前为止,集成到WISP平台中的传感器包括光、温度和整流电压,实验显示其工作范围可达4.5米。据作者所知,WISP是第一个完全可编程的计算平台,可以使用从远程(UHF) RFID读取器传输的功率运行,并在单个响应包中传输任意多比特数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a Passively-Powered, Programmable Sensing Platform for UHF RFID Systems
This paper presents a wireless, battery-free, platform for sensing and computation that is powered and read by a standards compliant ultra-high frequency (UHF) radio frequency identification (RFID) reader. The WISP (wireless identification and sensing platform) includes a fully-programmable 16 bit microcontroller with analog-to-digital converter. The microcontroller firmware implements portions of the electronic product code (EPC) class 1 generation 1 protocol. When queried, the platform communicates arbitrary sensor data by emulating an EPC tag whose ID encodes the desired sensor data; the required 16-bit CRC is computed dynamically by the microcontroller. The RFID reader reports the received tag ID to application software which can interpret the information contained in the tag ID. The programmability of the WISP along with its implementation as a PCB allows for flexible integration of arbitrary low-power sensors. Furthermore, sensors are also exclusively powered from the RFID reader resulting in a completely battery free device. Sensors integrated into the WISP platform so far include light, temperature, and rectified voltage, and are shown experimentally to have an operating range of up to 4.5m. To the authors' knowledge, WISP is the first fully programmable computing platform that can operate using power transmitted from a long-range (UHF) RFID reader and communicate arbitrary, multi-bit data in a single response packet.
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