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Panoramic three-dimensional optical digitization system assisted by a bi-mirror.

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    This study introduces a novel panoramic optical system for efficient 3D full-surface digitization. The laser-based system with mirrors captures comprehensive 3D data, ideal for complex object scanning.

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    Area of Science:

    • Optical Engineering
    • 3D Scanning Technologies
    • Computer Vision

    Background:

    • Digitizing object surfaces is crucial for virtual reality, art, design, and life sciences.
    • Existing 3D scanning methods face challenges in capturing complete surface data, especially for complex objects and scenes.

    Purpose of the Study:

    • To develop a straightforward, efficient, and robust panoramic 3D optical digitization system.
    • To enable full-surface 3D data acquisition of objects in complex environments.

    Main Methods:

    • A laser-based optical 3D measurement system integrated with a bi-mirror.
    • Utilizing mirrors for all-angle illumination in a single scanning pass.
    • Employing a rotational scanning method and laser triangulation for data acquisition.
    • Applying mirror reflection transformation to consolidate data into a global coordinate system.

    Main Results:

    • The system successfully acquires 3D information from multiple viewpoints.
    • Mirror integration allows comprehensive illumination and data capture.
    • Rotational scanning enhances efficiency for large-scale objects.
    • Experiments validated the system's capability for accurate full-surface 3D digitization across diverse samples.

    Conclusions:

    • The proposed panoramic 3D optical digitization system offers an efficient and robust solution for comprehensive surface scanning.
    • The integration of mirrors and rotational scanning effectively addresses challenges in capturing complex object geometries.
    • The system demonstrates high precision and validity for various object types and sizes in complex sceneries.