Roos-Hoefgeest Sara, Roos-Hoefgeest Mario, Álvarez Ignacio, González Rafael C
Department of Electrical, Computer Electronics and Systems Engineering, University of Oviedo, 33003 Oviedo, Spain.
Desarrollo de Soluciones Integrales Plus S.L., 33211 Gijón, Spain.
Sensors (Basel). 2023 Sep 2;23(17):7624. doi: 10.3390/s23177624.
In the manufacturing industry, inspection systems play a crucial role in ensuring product quality. High-resolution profilometric sensors have become increasingly popular for inspection due to their ability to provide detailed surface information. However, the development and testing of inspection systems can be costly and time-consuming. This paper presents the development of a simulation of an inspection system using a high-resolution profilometric sensor. A geometrical and noise model is proposed to simulate the readings of any actual profilometric sensor. The model replicates the sensor's movement on the CAD model of the inspected part. The model incorporates the physical properties of the sensor and combines noise sources from sensor uncertainty and speckle noise induced by the roughness of the material. Our contribution lies in noise modeling. This work proposes a combination of Perlin noise to simulate the speckle noise and Gaussian noise for the uncertainty-related noise. Perlin noise is generated based on the surface roughness parameters of the inspected part. The accuracy of the simulation system is evaluated by comparing the simulated scans with real scans. The results highlight the ability to simulate real scans of different parts, using commercial sensor specifications and the CAD model of the inspected part.
在制造业中,检测系统对于确保产品质量起着至关重要的作用。高分辨率轮廓测量传感器因其能够提供详细的表面信息而在检测中越来越受欢迎。然而,检测系统的开发和测试可能成本高昂且耗时。本文介绍了一种使用高分辨率轮廓测量传感器的检测系统模拟的开发。提出了一种几何和噪声模型来模拟任何实际轮廓测量传感器的读数。该模型在被检测部件的CAD模型上复制传感器的运动。该模型纳入了传感器的物理特性,并结合了来自传感器不确定性和材料粗糙度引起的散斑噪声的噪声源。我们的贡献在于噪声建模。这项工作提出了一种结合Perlin噪声来模拟散斑噪声和高斯噪声来模拟与不确定性相关的噪声的方法。Perlin噪声是根据被检测部件的表面粗糙度参数生成的。通过将模拟扫描与实际扫描进行比较来评估模拟系统的准确性。结果突出了使用商业传感器规格和被检测部件的CAD模型来模拟不同部件实际扫描的能力。