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Algorithms for fitting cylindrical objects to sparse range point clouds for rapid workspace modeling

机译:用于将圆柱对象拟合到稀疏点云以快速进行工作空间建模的算法

摘要

Current methods for construction site modeling employ large, expensive laser range scanners that produce dense range point clouds of a scene from different perspectives. While useful for many purposes, this approach is not feasible for real-time applications, which would enable automated obstacle avoidance and semiautomated equipment control, and could improve both safety and productivity significantly. This paper presents human-assisted rapid environmental modeling algorithms for construction, and focuses on cylindrical object fitting algorithms. The presented algorithms address construction site material of cylindrical shape. Experiments were conducted to determine: (1) the effect of the ratio of length to diameter of the cylinder to the accuracy of the results, (2) the effect of the angle of view to the accuracy of the results, (3) the minimum number of scanned points required to give adequate modeling accuracy for cylinders of various length to diameter ratios. The results indicate that the proposed algorithms can model geometric primitives used in a construction site rapidly and with sufficient accuracy for automated obstacle avoidance and equipment control functions.
机译:当前的建筑工地建模方法使用大型,昂贵的激光测距仪,它们从不同的角度产生场景的密集测距点云。虽然这种方法可用于许多用途,但对于实时应用而言并不可行,因为它可以实现自动避障和半自动化设备控制,并可以显着提高安全性和生产率。本文提出了用于构建的人类辅助快速环境建模算法,并着重于圆柱对象拟合算法。提出的算法解决了圆柱形的建筑工地材料。进行实验以确定:(1)圆柱体的长度与直径之比对结果准确性的影响;(2)视角对结果准确性的影响;(3)最小值为各种长径比的圆柱体提供足够的建模精度所需的扫描点数。结果表明,所提出的算法可以对建筑工地中使用的几何图元进行快速建模,并且具有足够的精度来自动避障和设备控制功能。

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