首页> 外文期刊>Journal of applied geodesy >High-Precision Surface Inspection: Uncertainty Evaluation within an Accuracy Range of 15μm with Triangulation-based Laser Line Scanners
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High-Precision Surface Inspection: Uncertainty Evaluation within an Accuracy Range of 15μm with Triangulation-based Laser Line Scanners

机译:高精度表面检测:使用基于三角测量的激光线扫描仪在15μm精度范围内进行不确定度评估

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摘要

Triangulation-based range sensors, e.g. laser line scanners, are used for high-precision geometrical acquisition of free-form surfaces, for reverse engineering tasks or quality management. In contrast to classical tactile measuring devices, these scanners generate a great amount of 3D-points in a short period of time and enable the inspection of soft materials. However, for accurate measurements, a number of aspects have to be considered to minimize measurement uncertainties. This study outlines possible sources of uncertainties during the measurement process regarding the scanner warm-up, the impact of laser power and exposure time as well as scanner's reaction to areas of discontinuity, e.g. edges. All experiments were performed using a fixed scanner position to avoid effects resulting from imaging geometry. The results show a significant dependence of measurement accuracy on the correct adaption of exposure time as a function of surface reflectivity and laser power. Additionally, it is illustrated that surface structure as well as edges can cause significant systematic uncertainties.
机译:基于三角测量的距离传感器激光线扫描仪用于对自由曲面的高精度几何采集,用于逆向工程任务或质量管理。与传统的触觉测量设备相比,这些扫描仪可在短时间内生成大量3D点,并可以检查软材料。然而,对于精确的测量,必须考虑许多方面以最小化测量不确定性。这项研究概述了在测量过程中有关扫描仪预热,激光功率和曝光时间的影响以及扫描仪对不连续区域(例如不连续区域)的反应等不确定性的可能来源。边缘。所有实验均使用固定的扫描仪位置进行,以避免成像几何结构产生的影响。结果表明,测量精度对曝光时间正确适应的依赖程度与表面反射率和激光功率有关。此外,还说明了表面结构和边缘会导致明显的系统不确定性。

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