Research and Development on 3-D Surface Profilometric Technique and System of Free-form Specular Surfaces
碩士 === 國立臺灣大學 === 機械工程學研究所 === 104 === Nowadays, the fringe reflection technique is widely used to measure specular objects. However, the exiting specular surface measuring system cannot measure objects with highly curved surface. Because the highly curved surface means that the surface slope distri...
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ndltd-TW-104NTU054891152016-10-30T04:17:04Z http://ndltd.ncl.edu.tw/handle/53704769566887310781 Research and Development on 3-D Surface Profilometric Technique and System of Free-form Specular Surfaces 自由鏡射面之三維形貌量測技術與系統研發 Huan-Yu Tseng 曾桓鈺 碩士 國立臺灣大學 機械工程學研究所 104 Nowadays, the fringe reflection technique is widely used to measure specular objects. However, the exiting specular surface measuring system cannot measure objects with highly curved surface. Because the highly curved surface means that the surface slope distribution range is too large to be measured. In this research, a coordinate system model is used to describe all the parameters in the system and provide a model of optical system design having large slope measurable range from derived model. This research also provides a measuring method which uses Gray Code as structured light and uses two thresholds for encoding structured light information to calculate the initial height value using shadow information next to object’s edge based on three-dimensional vector concept. Then, use the path integration method to reconstruct the whole object surface. It is proved, the maximum error of the proposed system can be controlled under 0.35% of the lateral size of measured samples and the slope measurable range of the proposed system is -0.5 ~ 0.5. At the same time, the proposed system is suitable for measuring spherical and free-form specular objects. Liang-Chia Chen 陳亮嘉 2016 學位論文 ; thesis 99 zh-TW |
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碩士 === 國立臺灣大學 === 機械工程學研究所 === 104 === Nowadays, the fringe reflection technique is widely used to measure specular objects. However, the exiting specular surface measuring system cannot measure objects with highly curved surface. Because the highly curved surface means that the surface slope distribution range is too large to be measured. In this research, a coordinate system model is used to describe all the parameters in the system and provide a model of optical system design having large slope measurable range from derived model.
This research also provides a measuring method which uses Gray Code as structured light and uses two thresholds for encoding structured light information to calculate the initial height value using shadow information next to object’s edge based on three-dimensional vector concept. Then, use the path integration method to reconstruct the whole object surface. It is proved, the maximum error of the proposed system can be controlled under 0.35% of the lateral size of measured samples and the slope measurable range of the proposed system is -0.5 ~ 0.5. At the same time, the proposed system is suitable for measuring spherical and free-form specular objects.
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author2 |
Liang-Chia Chen |
author_facet |
Liang-Chia Chen Huan-Yu Tseng 曾桓鈺 |
author |
Huan-Yu Tseng 曾桓鈺 |
spellingShingle |
Huan-Yu Tseng 曾桓鈺 Research and Development on 3-D Surface Profilometric Technique and System of Free-form Specular Surfaces |
author_sort |
Huan-Yu Tseng |
title |
Research and Development on 3-D Surface Profilometric Technique and System of Free-form Specular Surfaces |
title_short |
Research and Development on 3-D Surface Profilometric Technique and System of Free-form Specular Surfaces |
title_full |
Research and Development on 3-D Surface Profilometric Technique and System of Free-form Specular Surfaces |
title_fullStr |
Research and Development on 3-D Surface Profilometric Technique and System of Free-form Specular Surfaces |
title_full_unstemmed |
Research and Development on 3-D Surface Profilometric Technique and System of Free-form Specular Surfaces |
title_sort |
research and development on 3-d surface profilometric technique and system of free-form specular surfaces |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/53704769566887310781 |
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