Radio frequency identification tag design for automated data acquisition

G. Mitchell, M. Conn, James A. Huffman
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Abstract

Automated data acquisition has become a major part of the military's prognostics and diagnostics program as they move towards a condition based maintenance approach for logistics and mission readiness. The desire to apply this approach to a majority of new and legacy platforms has led to the development of a prototype radio frequency identification (RFID) tag with both serial and wireless communications capabilities that can be easily configured to different mechanical and electrical systems. This paper addresses the command architecture used for inter-node communication within the data acquisition network, and verifies the RFID's data collection capabilities by obtaining vibration signatures from bearings running on a machinery fault simulator. The vibration signatures from the RFID are compared to those obtained from a proven data acquisition method.
用于自动数据采集的射频识别标签设计
自动化数据采集已成为军方预测和诊断计划的重要组成部分,因为他们正朝着基于后勤和任务准备状态的维护方法迈进。将这种方法应用于大多数新平台和传统平台的愿望导致了具有串行和无线通信功能的原型射频识别(RFID)标签的开发,可以很容易地配置到不同的机械和电气系统。本文讨论了数据采集网络中用于节点间通信的命令架构,并通过在机械故障模拟器上获取轴承的振动特征来验证RFID的数据收集能力。来自RFID的振动特征与从经过验证的数据采集方法获得的振动特征进行了比较。
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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