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Design of an RFID-Based Battery-Free Programmable Sensing Platform

机译:基于RFID的无电池可编程传感平台的设计

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This paper presents the Wireless Identification and Sensing Platform (WISP), which is a programmable battery-free sensing and computational platform designed to explore sensor-enhanced radio frequency identification (RFID) applications. WISP uses a 16-bit ultralow-power microcontroller to perform sensing and computation while exclusively operating from harvested RF energy. Sensors that have successfully been integrated into the WISP platform to date include temperature, ambient light, rectified voltage, and orientation. The microcontroller encodes measurements into an Electronic Product Code (EPC) Class 1 Generation 1 compliant ID and dynamically computes the required 16-bit cyclical redundancy checking (CRC). Finally, WISP emulates the EPC protocol to communicate the ID to the RFID reader. 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 multibit data in a single response packet.
机译:本文介绍了无线识别和传感平台(WISP),它是一个可编程的无电池传感和计算平台,旨在探索传感器增强型射频识别(RFID)应用。 WISP使用16位超低功耗微控制器执行感测和计算,同时仅利用采集的RF能量进行操作。迄今为止,已成功集成到WISP平台中的传感器包括温度,环境光,整流电压和方向。微控制器将测量结果编码为符合1级电子产品代码(EPC)的ID,并动态计算所需的16位循环冗余校验(CRC)。最后,WISP模拟EPC协议以将ID传递给RFID阅读器。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阅读器传输的功率进行操作,并在单个响应数据包中传递任意多位数据。

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