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Application of Wavelet Analysis in the Virtual Measurement of Roundness/Cylindricalness for Shaft-like Components

机译:小波分析在轴状部件的圆度/圆柱度虚拟测量中的应用

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Wavelet analysis was applied to detect the greatest deviation from the perfect circle for the roundness and cylindricalness of shaft-like components in the virtual manufacturing engineering. Based on the concepts of the roundness and cylindricalness, the least square method was adopted into the determination of the reference-the least square circle from which the deviation was calculated. In order to obtain the extremum of the errors, wavelet transform was carried out with binary wavelet from the time domain to frequency domain. A virtual probe was used to have the signals for the measured point by using WTnode_gettranslation() function. The accuracy of the measurement depends, to a large extent, on the length of individual step along the axis and the density of the measured points on the sections. Experiments have shown that the measuring processing was time-saving and the results from the wavelet analysis were much reliable.
机译:应用小波分析来检测从虚拟制造工程中的轴状部件的圆度和圆柱度的完美圆的最大偏差。基于圆度和圆柱度的概念,采用最小二乘法测定参考 - 计算偏差的最小方圆。为了获得误差的极值,从时域与二进制小波进行小波变换到频域。使用WTNODE_GETTRANSLOATION()函数使用虚拟探测器来具有测量点的信号。测量的精度在很大程度上取决于沿着轴的单个步骤的长度和这些部分上测量点的密度。实验表明,测量处理是节省时间的,并且小波分析的结果很可靠。

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