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A new method for measuring straightness and yawing motion errors of a linear slide

机译:测量直线滑动器直线度和偏航运动误差的新方法

摘要

In this paper, an on-machine Fourier five-sensor (F5S) measurement method is developed using Fourier series and sensor integration techniques to determine the straightness and yawing motion errors of a linear slide. The profile of the slide is also determined in this error separation technique. The method is an extension of the previous Fourier threesensor (F3S) method (Fung, E. H. K., and Yang, S. M., 2000, "An Error Separation Technique for Measuring Straightness Motion Error of a Linear Slide, " Meas. Sci. Technol., 11, pp. 1515-1521; Yang, S. M., Fung, E. H. K., and Chiu, W. M., 2002, "Uncertainty Analysis of On-Machine Motion and Profile Measurement With Sensor Reading Errors, " Meas. Sci. Technol., 13, pp. 1937-1945) by including the effects of yawing error in the straightness motion error and profile measurements. The principles and operation of the F5S measurement method are described. The uncertainty analysis of the method in the presence of a sensor reading error is studied both in the frequency domain and the spatial domain. The spatial domain parameter is first optimized to yield the 12 possible sensor configurations and the final configuration is chosen based on the frequency domain parameter values. The method is evaluated by computer simulation where the simulated sensor outputs are derived from the predefined profile, straightness, and yawing motion errors. By comparing the calculated results with the input data, the F5S method is found to be superior to the F3S method as far as accuracy is concerned. The results reported in this simulation study not only confirm the feasibility of the F5S method but also encourage the author to perform an experimental study in the near future.
机译:在本文中,使用傅立叶级数和传感器集成技术开发了一种机上傅立叶五传感器(F5S)测量方法,用于确定线性滑块的直线度和偏航运动误差。滑块的轮廓也可以通过这种误差分离技术来确定。该方法是先前的傅里叶三传感器(F3S)方法(Fung,EHK和Yang,SM,2000,“用于测量线性滑块直线度运动误差的误差分离技术”,Meas。Sci。Technol。,11)的扩展。 ,pp。1515-1521; Yang,SM,Fung,EHK和Chiu,WM,2002,“具有传感器读取错误的机器运动和轮廓测量的不确定性分析”,Meas.Sci.Technol。,13,pp。 1937-1945),将偏航误差的影响包括在直线度运动误差和轮廓测量中。描述了F5S测量方法的原理和操作。在频域和空间域均研究了存在传感器读取误差时该方法的不确定性分析。首先对空间域参数进行优化,以产生12种可能的传感器配置,然后根据频域参数值选择最终配置。该方法通过计算机仿真进行评估,其中仿真的传感器输出是从预定义的轮廓,直线度和偏航运动误差中得出的。通过将计算结果与输入数据进行比较,就准确性而言,发现F5S方法优于F3S方法。该模拟研究报告的结果不仅证实了F5S方法的可行性,而且还鼓励作者在不久的将来进行实验研究。

著录项

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    Fung EHK;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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