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The Development of a Monitoring System Using a Wireless and Powerless Sensing Node Deployed Inside a Spindle

机译:使用部署在主轴内的无线无电传感节点开发监控系统

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摘要

Installation of a Wireless and Powerless Sensing Node (WPSN) inside a spindle enables the direct transmission of monitoring signals through a metal case of a certain thickness instead of the traditional method of using connecting cables. Thus, the node can be conveniently installed inside motors to measure various operational parameters. This study extends this earlier finding by applying this advantage to the monitoring of spindle systems. After over 2 years of system observation and optimization, the system has been verified to be superior to traditional methods. The innovation of fault diagnosis in this study includes the unmatched assembly dimensions of the spindle system, the unbalanced system, and bearing damage. The results of the experiment demonstrate that the WPSN provides a desirable signal-to-noise ratio (SNR) in all three of the simulated faults, with the difference of SNR reaching a maximum of 8.6 dB. Following multiple repetitions of the three experiment types, 80% of the faults were diagnosed when the spindle revolved at 4,000 rpm, significantly higher than the 30% fault recognition rate of traditional methods. The experimental results of monitoring of the spindle production line indicated that monitoring using the WPSN encounters less interference from noise compared to that of traditional methods. Therefore, this study has successfully developed a prototype concept into a well-developed monitoring system, and the monitoring can be implemented in a spindle production line or real-time monitoring of machine tools.
机译:在主轴内部安装无线无电传感节点(WPSN)可以通过一定厚度的金属外壳直接传输监视信号,而不是使用连接电缆的传统方法。因此,该节点可以方便地安装在电动机内部以测量各种运行参数。通过将这一优势应用于主轴系统的监视,本研究扩展了这一早期发现。经过2年多的系统观察和优化,该系统已被证明优于传统方法。本研究中故障诊断的创新包括主轴系统的装配尺寸不匹配,系统不平衡以及轴承损坏。实验结果表明,WPSN在所有三个模拟故障中均提供了理想的信噪比(SNR),SNR的差异最大达到8.6 dB。在对这三种实验类型进行多次重复之后,当主轴以4,000 rpm旋转时,诊断出80%的故障,明显高于传统方法的30%的故障识别率。主轴生产线监控的实验结果表明,与传统方法相比,使用WPSN进行监控受到的噪音干扰较小。因此,本研究成功地将原型概念发展为完善的监控系统,并且可以在主轴生产线或机床的实时监控中进行监控。

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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