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Structure parameter analysis and uncertainty evaluation for single-camera stereo-digital image correlation with a

Liping Yu, Bing Pan

    Applied Optics
    |September 9, 2016
    PubMed
    Summary

    This study analyzes optical design for single-camera stereo-digital image correlation (stereo-DIC) systems. Findings guide optimal design and predict measurement uncertainties for 3D shape and deformation analysis.

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    Area of Science:

    • Optical Engineering
    • Metrology
    • Experimental Mechanics

    Background:

    • Single-camera stereo-digital image correlation (stereo-DIC) with a four-mirror adapter is gaining traction for 3D measurements.
    • Optimal optical design and understanding measurement uncertainties are crucial for this technique.

    Purpose of the Study:

    • To analyze the optical model of four-mirror adapter-assisted stereo-DIC systems.
    • To facilitate optimal optical structure design for specific measurement applications.
    • To predict the influence of structural parameters on measurement uncertainty.

    Main Methods:

    • Comprehensive analysis of structural parameters, including baseline distance and valid field of view.
    • Theoretical assessment of parameter influence on measurement uncertainty using the law of propagation of uncertainties.
    • Experimental verification through system calibration and displacement measurement of a planar plate.

    Main Results:

    • Established a clear understanding of the optical model for four-mirror adapter stereo-DIC.
    • Quantified the impact of structural parameters on measurement uncertainty.
    • Validated the analytical predictions through experimental measurements.

    Conclusions:

    • The study provides a framework for optimizing stereo-DIC optical designs.
    • Theoretical analysis effectively predicts measurement uncertainties.
    • Verified accuracy and effectiveness of the proposed analytical approach for 3D deformation analysis.