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Volume Measurement of Moving Irregular Objects Using Linear Laser and Camera

机译:使用线性激光和相机移动不规则对象的体积测量

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A non-contact volume measurement method for irregular objects is proposed in this paper based on 3D reconstruction technology, where a linear laser and a camera are used. The line-surface model of laser surface and feature points is first established in a camera coordinate system. The point cloud coordinates of measured object are calculated using the geometric measurement principle and transformed into the world coordinate system from the camera coordinate system. The differential object point cloud is obtained by subtracting the reconstructed model from the initial background model, and the object volume is calculated by integrating the differential depth point cloud data. To extract accurate center of light stripe, a fitting algorithm is proposed using the truncated gaussian distribution. The measurement error is less than 4.5% at the distance of 2 meters away from the measurement devices. The experimental results show that the proposed method can accurately reconstruct 3D objects and accurately measure the irregular objects volume.
机译:本文基于3D重建技术提出了用于不规则对象的非接触体积测量方法,其中使用线性激光器和相机。首先在相机坐标系中建立激光表面和特征点的线表面模型。使用几何测量原理计算测量对象的点云坐标,并从相机坐标系转换到世界坐标系中。通过从初始背景模型中减去重建的模型来获得差分对象云,并且通过集成差分深度云数据来计算对象体积。为了提取精确的光条形中心,使用截短的高斯分布提出了一种拟合算法。测量误差距离测量装置2米处的距离小于4.5%。实验结果表明,该方法可以准确地重建3D对象并准确测量不规则对象体积。

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