Design of the Automated Calibration Process for an Experimental Laser Inspection Stand

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Abstract

This paper deals with the concept of the automated calibration design for inspection systems using laser sensors. The conceptual solution is based on using a laser sensor and its ability to scan 3D surfaces of inspected objects in order to create a representative point cloud. Problems of scanning are briefly discussed. The automated calibration procedure for solving problems of errors due to non-precise adjustment of the mechanical arrangement, possible tolerances in assembly, and their following elimination is proposed. The main goal is to develop a system able to measure and quantify the quality of produced objects in the environment of Industry 4.0. Laboratory measurements on the experimental stand, including the principal software solution for automated calibration of laser sensors suitable for gear wheel inspection systems are presented. There is described design of compensation eccentricity by Fourier transform and sinusoidal fitting to identify and suppress the first harmonic component in the data with high precision measuring.

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Klarák, J., Andok, R., Hricko, J., Klačková, I., & Tsai, H. Y. (2022). Design of the Automated Calibration Process for an Experimental Laser Inspection Stand. Sensors, 22(14). https://doi.org/10.3390/s22145306

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