The geometric phase analysis method based on the local high resolution discrete Fourier transform for deformation measurement

Xianglu Dai, Huimin Xie, Huaixi Wang, Chuanwei Li, Zhanwei Liu, Lifu Wu

Research output: Contribution to journalArticlepeer-review

23 Citations (Scopus)

Abstract

The geometric phase analysis (GPA) method based on the local high resolution discrete Fourier transform (LHR-DFT) for deformation measurement, defined as LHR-DFT GPA, is proposed to improve the measurement accuracy. In the general GPA method, the fundamental frequency of the image plays a crucial role. However, the fast Fourier transform, which is generally employed in the general GPA method, could make it difficult to locate the fundamental frequency accurately when the fundamental frequency is not located at an integer pixel position in the Fourier spectrum. This study focuses on this issue and presents a LHR-DFT algorithm that can locate the fundamental frequency with sub-pixel precision in a specific frequency region for the GPA method. An error analysis is offered and simulation is conducted to verify the effectiveness of the proposed method; both results show that the LHR-DFT algorithm can accurately locate the fundamental frequency and improve the measurement accuracy of the GPA method. Furthermore, typical tensile and bending tests are carried out and the experimental results verify the effectiveness of the proposed method.

Original languageEnglish
Article number025402
JournalMeasurement Science and Technology
Volume25
Issue number2
DOIs
Publication statusPublished - 1 Feb 2014

Keywords

  • GPA
  • LHR-DFT GPA
  • discrete Fourier transform
  • fundamental frequency (Some figures may appear in colour only in the online journal)

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