A Multifrequency Heterodyne Phase Error Compensation Method for 3D Reconstruction

In view of the problem of “jumping points” in the phase unwrapping of the multifrequency heterodyne principle, this paper proposes a novel method to improve the multifrequency heterodyne. By solving the root-mean-square error of the original frequency function, it includes the relationship between t...

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Main Authors: Zihao Yu, Jin Liu, Haima Yang, Bo Huang, Yumei Jian
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Journal of Sensors
Online Access:http://dx.doi.org/10.1155/2020/8833305
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spelling doaj-b6619606446245d5b1367918d0641da62020-11-25T03:24:11ZengHindawi LimitedJournal of Sensors1687-725X1687-72682020-01-01202010.1155/2020/88333058833305A Multifrequency Heterodyne Phase Error Compensation Method for 3D ReconstructionZihao Yu0Jin Liu1Haima Yang2Bo Huang3Yumei Jian4School of Electronic and Electrical Engineering, Shanghai University of Engineering Science, Shanghai, 201600, ChinaSchool of Electronic and Electrical Engineering, Shanghai University of Engineering Science, Shanghai, 201600, ChinaSchool of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai, 200093, ChinaSchool of Electronic and Electrical Engineering, Shanghai University of Engineering Science, Shanghai, 201600, ChinaSchool of Electronic and Electrical Engineering, Shanghai University of Engineering Science, Shanghai, 201600, ChinaIn view of the problem of “jumping points” in the phase unwrapping of the multifrequency heterodyne principle, this paper proposes a novel method to improve the multifrequency heterodyne. By solving the root-mean-square error of the original frequency function, it includes the relationship between the error and the adjacent phase in the condition of constrained phase unwrapping, and it compensates phase ±2π of the skip point. To ensure the accuracy of phase unwrapping, the function with a “jump point” after each phase unwrapping and the absolute phase curve of the principal value function are used to establish the threshold judgment model of the least square method, and the initial phase unwrapping of the principal value function with different frequencies is carried out continuously. The simulation analysis of phase compensation with the four-step phase-shifting method shows that the error is reduced to 36% under the set environment. The experimental result of 3D reconstruction by measuring the flatness of the plate shows that the error decreases by 41% after phase compensation compared with before phase compensation. The three-dimensional reconstruction experiment of pitch measurement with a nut shows that the nut after phase compensation is smooth without noise, and the pitch error is 0.033 mm, which verified the method is workable and effective.http://dx.doi.org/10.1155/2020/8833305
collection DOAJ
language English
format Article
sources DOAJ
author Zihao Yu
Jin Liu
Haima Yang
Bo Huang
Yumei Jian
spellingShingle Zihao Yu
Jin Liu
Haima Yang
Bo Huang
Yumei Jian
A Multifrequency Heterodyne Phase Error Compensation Method for 3D Reconstruction
Journal of Sensors
author_facet Zihao Yu
Jin Liu
Haima Yang
Bo Huang
Yumei Jian
author_sort Zihao Yu
title A Multifrequency Heterodyne Phase Error Compensation Method for 3D Reconstruction
title_short A Multifrequency Heterodyne Phase Error Compensation Method for 3D Reconstruction
title_full A Multifrequency Heterodyne Phase Error Compensation Method for 3D Reconstruction
title_fullStr A Multifrequency Heterodyne Phase Error Compensation Method for 3D Reconstruction
title_full_unstemmed A Multifrequency Heterodyne Phase Error Compensation Method for 3D Reconstruction
title_sort multifrequency heterodyne phase error compensation method for 3d reconstruction
publisher Hindawi Limited
series Journal of Sensors
issn 1687-725X
1687-7268
publishDate 2020-01-01
description In view of the problem of “jumping points” in the phase unwrapping of the multifrequency heterodyne principle, this paper proposes a novel method to improve the multifrequency heterodyne. By solving the root-mean-square error of the original frequency function, it includes the relationship between the error and the adjacent phase in the condition of constrained phase unwrapping, and it compensates phase ±2π of the skip point. To ensure the accuracy of phase unwrapping, the function with a “jump point” after each phase unwrapping and the absolute phase curve of the principal value function are used to establish the threshold judgment model of the least square method, and the initial phase unwrapping of the principal value function with different frequencies is carried out continuously. The simulation analysis of phase compensation with the four-step phase-shifting method shows that the error is reduced to 36% under the set environment. The experimental result of 3D reconstruction by measuring the flatness of the plate shows that the error decreases by 41% after phase compensation compared with before phase compensation. The three-dimensional reconstruction experiment of pitch measurement with a nut shows that the nut after phase compensation is smooth without noise, and the pitch error is 0.033 mm, which verified the method is workable and effective.
url http://dx.doi.org/10.1155/2020/8833305
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