High Speed 3D Shape Measurement with Temporal Fourier Transform Profilometry
A novel high-speed 3D shape measurement technology called temporal Fourier transform profilometry (TFTP for short) is proposed by combining the merits of Fourier transform profilometry (FTP) and phase-measuring profilometry (PMP). Instead of using the digital light projector, a mechanical projector...
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doaj-5c4c2fe1d89e4877a978b49fd08666102020-11-25T00:39:17ZengMDPI AGApplied Sciences2076-34172019-10-01919412310.3390/app9194123app9194123High Speed 3D Shape Measurement with Temporal Fourier Transform ProfilometryHaihua Zhang0Qican Zhang1Yong Li2Yihang Liu3College of Electronics and Information Engineering, Sichuan University, Chengdu 610065, ChinaCollege of Electronics and Information Engineering, Sichuan University, Chengdu 610065, ChinaInstitute of Information Optics, Zhejiang Normal University, Jinhua 321004, ChinaCollege of Electronics and Information Engineering, Sichuan University, Chengdu 610065, ChinaA novel high-speed 3D shape measurement technology called temporal Fourier transform profilometry (TFTP for short) is proposed by combining the merits of Fourier transform profilometry (FTP) and phase-measuring profilometry (PMP). Instead of using the digital light projector, a mechanical projector is employed to generate multi-period phase-shifting fringe patterns sequentially. During the reconstruction process, the phase value of each pixel is calculated independently along the temporal axis and no spectrum filtering operation is performed in a spatial domain. Therefore, high-frequency components containing the detailed information of the measured object effectively remain. The proposed method is suitable for measuring isolated dynamic objects. Only one frame of deformed fringe pattern is required to retrieve one 3D shape of the measured object, so it has the obvious advantage if measuring the dynamic scene at a high speed. A low-cost self-made mechanical projector with fast projection speed is developed to execute the principle-proof experiments, whose results demonstrate the feasibility of measuring isolated dynamic objects.https://www.mdpi.com/2076-3417/9/19/4123high speed 3d shape measurementdynamic measurementfringe projectiontemporal fourier transform profilometry (tftp) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Haihua Zhang Qican Zhang Yong Li Yihang Liu |
spellingShingle |
Haihua Zhang Qican Zhang Yong Li Yihang Liu High Speed 3D Shape Measurement with Temporal Fourier Transform Profilometry Applied Sciences high speed 3d shape measurement dynamic measurement fringe projection temporal fourier transform profilometry (tftp) |
author_facet |
Haihua Zhang Qican Zhang Yong Li Yihang Liu |
author_sort |
Haihua Zhang |
title |
High Speed 3D Shape Measurement with Temporal Fourier Transform Profilometry |
title_short |
High Speed 3D Shape Measurement with Temporal Fourier Transform Profilometry |
title_full |
High Speed 3D Shape Measurement with Temporal Fourier Transform Profilometry |
title_fullStr |
High Speed 3D Shape Measurement with Temporal Fourier Transform Profilometry |
title_full_unstemmed |
High Speed 3D Shape Measurement with Temporal Fourier Transform Profilometry |
title_sort |
high speed 3d shape measurement with temporal fourier transform profilometry |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2019-10-01 |
description |
A novel high-speed 3D shape measurement technology called temporal Fourier transform profilometry (TFTP for short) is proposed by combining the merits of Fourier transform profilometry (FTP) and phase-measuring profilometry (PMP). Instead of using the digital light projector, a mechanical projector is employed to generate multi-period phase-shifting fringe patterns sequentially. During the reconstruction process, the phase value of each pixel is calculated independently along the temporal axis and no spectrum filtering operation is performed in a spatial domain. Therefore, high-frequency components containing the detailed information of the measured object effectively remain. The proposed method is suitable for measuring isolated dynamic objects. Only one frame of deformed fringe pattern is required to retrieve one 3D shape of the measured object, so it has the obvious advantage if measuring the dynamic scene at a high speed. A low-cost self-made mechanical projector with fast projection speed is developed to execute the principle-proof experiments, whose results demonstrate the feasibility of measuring isolated dynamic objects. |
topic |
high speed 3d shape measurement dynamic measurement fringe projection temporal fourier transform profilometry (tftp) |
url |
https://www.mdpi.com/2076-3417/9/19/4123 |
work_keys_str_mv |
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1725294115367682048 |