Three-dimensional scanning system based on a low-cost infrared sensor

João Braun, J. Lima, A. Pereira, Cláudia Rocha, P. Costa
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引用次数: 3

Abstract

Nowadays, with the availability of 3D printers, the scanners for objects are becoming increasingly present since they allow to replicate objects by 3D printing, especially for small scale sizes. However, the majority of these technologies are expensive, due to the complexity of this task. Therefore, this work presents a prototype of a low-cost 3D scanning system for small objects using a point cloud to stereolithography approach where it was already validated in simulation in previous work. This concept has a restriction that the objects must have a uniform shape, i.e, without discontinuities. The architecture is composed of two stepper motors, due to their precision, a rotating plate to allow 360 degrees scans and another rotating structure that allows the infrared distance sensor to scan the object from bottom to top (90 degrees). The prototype was validated in the real scenario with good results.
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基于低成本红外传感器的三维扫描系统
如今,随着3D打印机的可用性,物体扫描仪变得越来越多,因为它们允许通过3D打印复制物体,特别是对于小尺寸。然而,由于这项任务的复杂性,这些技术中的大多数都是昂贵的。因此,这项工作提出了一种低成本的小物体3D扫描系统的原型,该系统使用点云到立体光刻方法,在以前的工作中已经在模拟中得到了验证。这个概念有一个限制,即物体必须有一个统一的形状,即没有不连续。该架构由两个步进电机组成,由于它们的精度,一个旋转板允许360度扫描,另一个旋转结构允许红外距离传感器从下到上扫描物体(90度)。在实际场景中对样机进行了验证,效果良好。
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