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FPGA-Based Vibration Analyzer for Continuous CNC Machinery Monitoring With Fused FFT-DWT Signal Processing

机译:基于FPGA的振动分析仪,用于融合FFT-DWT信号处理的连续CNC机械监控

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摘要

The industry of machine tools keeps a constant progress that responds to the most demanding market requirements, such as production-time decreasing and zero-defect manufacturing. As part of this progress, sensors and monitoring instruments have been integrated on machine tools, improving computer numerical control (CNC) and monitoring during the manufacturing process. The vibrations are one of the most significant variables to be monitored on machine tools since they directly affect the end piece finishing, tool life expectancy, general machine-tool condition, current consumption, etc. Time domain, fast Fourier transform (FFT), and discrete wavelet transform (DWT) are techniques often used for vibration analysis, because they are computationally efficient for online implementation; unfortunately, it is difficult to find an instrument for vibration analysis that allows individually applying the time, FFT, and DWT techniques, and their fusion. Moreover, the lack of instruments with characteristics such as open architecture, low cost, parallel processing, and continuous online monitoring is remarkable. The contribution of this work consists of developing a vibration-analysis instrument based on the time, FFT, DWT, and DWT-FFT fusion techniques. The instrument is implemented into a low-cost field-programmable gate array with proprietary hardware signal-processing cores in parallel for achieving real-time and continuous online analysis. Experimentation is done to show the proposed methodology efficiency and the developed-instrument versatility, focusing on industrial control applications for CNC machine tools.
机译:机床行业一直在不断发展,以响应最苛刻的市场需求,例如缩短生产时间和实现零缺陷制造。作为此进展的一部分,传感器和监视仪器已集成在机床上,从而在制造过程中改进了计算机数控(CNC)和监视功能。振动是机床上要监控的最重要的变量之一,因为它们会直接影响最终零件的精加工,刀具寿命,一般机床条件,电流消耗等。时域,快速傅里叶变换(FFT)和离散小波变换(DWT)是经常用于振动分析的技术,因为它们在线执行时计算效率高;不幸的是,很难找到一种可以单独应用时间,FFT和DWT技术及其融合的振动分析仪器。此外,缺乏具有开放式架构,低成本,并行处理和连续在线监视等特性的仪器也很明显。这项工作的贡献在于开发了一种基于时间,FFT,DWT和DWT-FFT融合技术的振动分析仪器。该仪器被实现为一个低成本的现场可编程门阵列,具有专有的硬件信号处理内核,可以并行进行并行处理,以实现实时和连续的在线分析。实验表明了拟议的方法效率和发达的仪器通用性,主要针对CNC机床的工业控制应用。

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