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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A new method for defining the measurement-uncertainty model of CNC laser-triangulation scanner
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A new method for defining the measurement-uncertainty model of CNC laser-triangulation scanner

机译:定义CNC激光三角扫描仪测量不确定度模型的新方法

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摘要

This article examines the measurement uncertainty in terms of the incident angle, the object colour and the measurement distance for a Computer Numerical Control (CNC) laser-scanning process. It describes a new method for predicting the measurement uncertainty that simultaneously considers all three parameters. A set of measurements with different values for these parameters was made in order to describe the measurement uncertainty for the whole measuring range of the laser-scanning device. The final result of this research is an equation model that allows an accurate prediction of the measurement uncertainty within the investigated measurement field while the results of the extrapolated measurement field give an accuracy of the prediction that is better than 15%. In general, the model can also be useful as a measuring guideline for any other laser-triangulation measuring device, although the values would need to be adapted to each particular device. The, thus, obtained equation model could then be implemented into automatic inspection/control lines or used for self-adaptive measuring CNC paths to perform measurements in the optimal measuring range for a particular surface.
机译:本文从入射角,物体颜色和计算机数控(CNC)激光扫描过程的测量距离方面检查了测量的不确定性。它描述了一种同时考虑所有三个参数的预测测量不确定度的新方法。为了描述激光扫描设备整个测量范围的测量不确定度,对这些参数进行了一系列具有不同值的测量。这项研究的最终结果是一个方程模型,该模型可以准确预测所研究的测量范围内的测量不确定度,而外推的测量范围的结果则可以使预测精度优于15%。通常,该模型还可以用作任何其他激光三角测量设备的测量准则,尽管这些值需要根据每个特定设备进行调整。这样获得的方程模型然后可以实现到自动检查/控制线中,或用于自适应测量CNC路径,以在特定表面的最佳测量范围内执行测量。

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