首页> 外文会议>ASME international manufacturing science and engineering conference >CHARACTERIZATION, MODELLING AND ANALYSIS OF LIGHT REFLECTANCE DURING IN-PROCESS SURFACE MEASUREMENTS USING WHITE LIGHT BASED 3D OPTICAL GAUGE
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CHARACTERIZATION, MODELLING AND ANALYSIS OF LIGHT REFLECTANCE DURING IN-PROCESS SURFACE MEASUREMENTS USING WHITE LIGHT BASED 3D OPTICAL GAUGE

机译:使用基于白光的3D光学规进行过程表面测量期间的光反射的表征,建模和分析

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The quality of light reflectance model mainly depends upon the correctness of cloud of points generated by the high-resolution charge coupled-device (CCD) camera. We have performed an experiment to capture the dimension of an object using Optigo 200 robot which provides an innovative way for solving dimensional control related challenges. The integrated system collects highly accurate and dense cloud of points for measuring an object at different design of experiment (DOE) levels. It also performs immediate analysis of collected data and calculates the deviations from the given specifications. Thus we tried to visualize the object using its key parameters. In this paper, we describe the functional relationship of real-world surfaces with the dependence of light exposure and camera direction. Seven step wedge (as a measurement object) is used in our case study to carry out the stereovisiori based experiment. Finally, a comparative analysis shows model accuracy over conventional measurement techniques.
机译:光反射模型的质量主要取决于高分辨率电荷耦合器件(CCD)相机生成的点云的正确性。我们已经进行了一个实验,使用Optigo 200机器人捕获物体的尺寸,该机器人提供了解决尺寸控制相关挑战的创新方法。该集成系统收集高度准确且密集的点云,以在不同的实验设计(DOE)级别上测量对象。它还可以对收集到的数据立即进行分析,并计算出与给定规格的偏差。因此,我们尝试使用其关键参数来可视化该对象。在本文中,我们描述了真实表面与曝光量和相机方向之间的函数关系。在我们的案例研究中,使用了七阶楔形物(作为测量对象)来进行基于立体视觉的实验。最后,对比分析显示了模型优于传统测量技术的准确性。

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