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A Multi-View Stereo Measurement System Based on a Laser Scanner for Fine Workpieces

机译:基于激光扫描仪的多视角立体测量系统用于精细工件

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摘要

A new solution to the high-quality 3D reverse modeling problem of complex surfaces for fine workpieces is presented using a laser line-scanning sensor. Due to registration errors, measurement errors, deformations, etc., a fast and accurate method is important in machine vision measurement. This paper builds a convenient and economic multi-view stereo (MVS) measurement system based on a linear stage and a rotary stage to reconstruct the measured object surface completely and accurately. In the proposed technique, the linear stage is used to generate the trigger signal and synchronize the laser sensor scanning; the rotary stage is used to rotate the object and obtain multi-view point cloud data, and then the multi-view point cloud data are registered and integrated into a 3D model. The measurement results show a measurement accuracy of 0.075 mm for a 360° reconstruction in 34 s, and some evaluation experiments were carried out to demonstrate the validity and practicability of the proposed technique.
机译:使用激光线扫描传感器,提出了一种用于精细工件的复杂表面的高质量3D逆向建模问题的新解决方案。由于配准误差,测量误差,变形等,快速准确的方法在机器视觉测量中很重要。本文建立了一种方便,经济的基于线性平台和旋转平台的多视点立体测量系统,以完整,准确地重建被测物体表面。在所提出的技术中,线性平台用于产生触发信号并使激光传感器扫描同步。旋转平台用于旋转物体并获得多视点云数据,然后将多视点云数据注册并集成到3D模型中。测量结果表明,在34 s内进行360°重建时,测量精度为0.075 mm,并进行了一些评估实验,以证明所提出技术的有效性和实用性。

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