小物体红外三维扫描仪

Q3 Decision Sciences
Marlindia Ike Sari, Anang Sularsa, Rini Handayani, Surya Badrudin Alamsyah, Siswandi Riki Rizaldi
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引用次数: 0

摘要

三维扫描是一种将各种距离集合以三维形式转化为物体可视化的方法。根据3D扫描仪的用途和目标对象的大小,开发3D扫描仪具有各种方法和技术。本研究旨在建立3D扫描仪的原型,扫描尺寸最大为(10x7x23)cm的小物体。该研究采用了a-三维(3D)扫描仪,使用红外线和电机将红外线向上移动以获得z坐标。红外线是用来扫描一个物体,并将基于红外距离测量的结果可视化。同时,旋转物体的电机得到(X, Y)坐标。将目标放置在扫描仪的中心,目标与红外的最大距离为20cm。该模型利用红外测量物体的距离,收集每个物体高度的结果,并在图形用户界面中可视化。在本研究中,我们对扫描仪进行了物体与红外之间的距离分别为7 cm、10 cm、15 cm和20 cm的测试。在物体与红外线距离为10cm的情况下,最佳结果准确率为80%。该扫描仪用于圆柱形物体和非光滑材料制成的物体时,效果最好。本研究不建议对有边缘点和金属材料的物体进行设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D Scanner Using Infrared for Small Object
Three-Dimensional scanning is a method to convert various distances set into object visualization in 3-dimensional form. Developing a 3D scanner has various methods and techniques depending on the 3d scanner's purpose and the size of the object target. This research aims to build a prototype of a 3D scanner scanning small objects with dimensions maximum(10x7x23)cm. The study applied an a-three dimensional(3D) scanner using infrared and a motor to move the infrared upward to get Z-ordinate. The infrared is used to scan an object and visualize the result based on distance measurement by infrared. At the same time, the motor for rotating objects gets the (X, Y) ordinates. The object was placed in the center of the scanner, and the maximum distance of the object from infrared was 20cm. The model uses infrared to measure the object's distance, collect the result for each object's height, and visualize it in the graphic user interface. In this research, we tested the scanner with the distance between the object and infrared were 7 cm, 10 cm, 15 cm, and 20 cm. The best result was 80% accurate, with the distance between the object and the infrared being 10cm. The best result was obtained when the scanner was used on a cylindrical object and an object made of a non-glossy material. The design of this study is not recommended for objects with edge points and metal material.
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来源期刊
JOIV International Journal on Informatics Visualization
JOIV International Journal on Informatics Visualization Decision Sciences-Information Systems and Management
CiteScore
1.40
自引率
0.00%
发文量
100
审稿时长
16 weeks
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