Uniaxial 3D Measurement with Auto-Synchronous Phase-Shifting and Defocusing Based on a Tilted Grating

Conventional uniaxial techniques generally require shifting objects or projection grating with the assistance of a high-precision mechanical moving component. To overcome this limitation, we propose a novel uniaxial 3-D shape measurement system with auto-synchronous phase-shifting and defocusing by...

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Main Authors: Hui Ren, Yuankun Liu, Yajun Wang, Ningyi Liu, Xin Yu, Xianyu Su
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/11/3730
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spelling doaj-efa528c067154de5b464ce116ead73452021-06-01T01:19:28ZengMDPI AGSensors1424-82202021-05-01213730373010.3390/s21113730Uniaxial 3D Measurement with Auto-Synchronous Phase-Shifting and Defocusing Based on a Tilted GratingHui Ren0Yuankun Liu1Yajun Wang2Ningyi Liu3Xin Yu4Xianyu Su5Department of Opto-Electronic, Sichuan University, Chengdu 610065, ChinaDepartment of Opto-Electronic, Sichuan University, Chengdu 610065, ChinaDepartment of Opto-Electronic, Sichuan University, Chengdu 610065, ChinaDepartment of Opto-Electronic, Sichuan University, Chengdu 610065, ChinaDepartment of Opto-Electronic, Sichuan University, Chengdu 610065, ChinaDepartment of Opto-Electronic, Sichuan University, Chengdu 610065, ChinaConventional uniaxial techniques generally require shifting objects or projection grating with the assistance of a high-precision mechanical moving component. To overcome this limitation, we propose a novel uniaxial 3-D shape measurement system with auto-synchronous phase-shifting and defocusing by using a tilted and fixed projection grating. The tilted focused image plane (FIP), which is reflected by a mirror at about 90 degrees, could be shifted across the measured surface by slightly rotating the mirror within a small angle range. This procedure will simultaneously introduce the change in defocusing and phase-shifting of the fringe. The modulation curve of each point can be deciphered by Fourier fringe analysis after a sequence of fringe intensities is acquired. Since both the measured object and projection grating are fixed, the proposed method could make the measurement system more compact and flexible. Both computer simulation and experiments are carried out to demonstrate the validity of this proposed system.https://www.mdpi.com/1424-8220/21/11/3730uniaxialtechniquesauto-synchronous phase-shiftingtilted focused image plane (FIP)tilt focusingrotate scanning
collection DOAJ
language English
format Article
sources DOAJ
author Hui Ren
Yuankun Liu
Yajun Wang
Ningyi Liu
Xin Yu
Xianyu Su
spellingShingle Hui Ren
Yuankun Liu
Yajun Wang
Ningyi Liu
Xin Yu
Xianyu Su
Uniaxial 3D Measurement with Auto-Synchronous Phase-Shifting and Defocusing Based on a Tilted Grating
Sensors
uniaxial
techniques
auto-synchronous phase-shifting
tilted focused image plane (FIP)
tilt focusing
rotate scanning
author_facet Hui Ren
Yuankun Liu
Yajun Wang
Ningyi Liu
Xin Yu
Xianyu Su
author_sort Hui Ren
title Uniaxial 3D Measurement with Auto-Synchronous Phase-Shifting and Defocusing Based on a Tilted Grating
title_short Uniaxial 3D Measurement with Auto-Synchronous Phase-Shifting and Defocusing Based on a Tilted Grating
title_full Uniaxial 3D Measurement with Auto-Synchronous Phase-Shifting and Defocusing Based on a Tilted Grating
title_fullStr Uniaxial 3D Measurement with Auto-Synchronous Phase-Shifting and Defocusing Based on a Tilted Grating
title_full_unstemmed Uniaxial 3D Measurement with Auto-Synchronous Phase-Shifting and Defocusing Based on a Tilted Grating
title_sort uniaxial 3d measurement with auto-synchronous phase-shifting and defocusing based on a tilted grating
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-05-01
description Conventional uniaxial techniques generally require shifting objects or projection grating with the assistance of a high-precision mechanical moving component. To overcome this limitation, we propose a novel uniaxial 3-D shape measurement system with auto-synchronous phase-shifting and defocusing by using a tilted and fixed projection grating. The tilted focused image plane (FIP), which is reflected by a mirror at about 90 degrees, could be shifted across the measured surface by slightly rotating the mirror within a small angle range. This procedure will simultaneously introduce the change in defocusing and phase-shifting of the fringe. The modulation curve of each point can be deciphered by Fourier fringe analysis after a sequence of fringe intensities is acquired. Since both the measured object and projection grating are fixed, the proposed method could make the measurement system more compact and flexible. Both computer simulation and experiments are carried out to demonstrate the validity of this proposed system.
topic uniaxial
techniques
auto-synchronous phase-shifting
tilted focused image plane (FIP)
tilt focusing
rotate scanning
url https://www.mdpi.com/1424-8220/21/11/3730
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