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    IBMR환경에서 3D모델링의 최적화 방안 = - Optimal Operation of 3D Modeling on IBMR Environment -

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    https://www.riss.kr/link?id=A103160499

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    This study explores how to get the best results in 3D data capacity and quality using IBMR technology, which is being introduced in 3D graphics production process. Applied image based modeling technique to three objects. Various shapes such as complex shape objects, medium sized objects, and dark colored objects were selected for the diversity of experiment subjects. As a result, criteria for selecting appropriate values for image alignment accuracy, dense cloud quality, and mesh generation level suitable for each object were prepared. In addition, clarify the processing principle of image alignment accuracy according to the complexity of structure and shape, the relationship between mesh generation density and data capacity, and the density point group generation process and the number of polygon planes. Such research is meaningful because it provides a comprehensive means of understanding and optimizing the IBMR technique in 3D computer graphics tasks, enabling them to achieve the optimum time and quality of the overall work time and the quality of the product.
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    This study explores how to get the best results in 3D data capacity and quality using IBMR technology, which is being introduced in 3D graphics production process. Applied image based modeling technique to three objects. Various shapes such as complex...

    This study explores how to get the best results in 3D data capacity and quality using IBMR technology, which is being introduced in 3D graphics production process. Applied image based modeling technique to three objects. Various shapes such as complex shape objects, medium sized objects, and dark colored objects were selected for the diversity of experiment subjects. As a result, criteria for selecting appropriate values for image alignment accuracy, dense cloud quality, and mesh generation level suitable for each object were prepared. In addition, clarify the processing principle of image alignment accuracy according to the complexity of structure and shape, the relationship between mesh generation density and data capacity, and the density point group generation process and the number of polygon planes. Such research is meaningful because it provides a comprehensive means of understanding and optimizing the IBMR technique in 3D computer graphics tasks, enabling them to achieve the optimum time and quality of the overall work time and the quality of the product.

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