| Literature DB >> 35069718 |
Abstract
Panorama can reflect the image seen at any angle of view at a certain point of view. How to improve the quality of panorama stitching and use it as a data foundation in the "smart tourism" system has become a research hotspot in recent years. Image stitching means to use the overlapping area between the images to be stitched for registration and fusion to generate a new image with a wider viewing angle. This article takes the production of "Tai Chi" animation as an example to apply image stitching technology to the production of realistic 3D model textures to simplify the production of animation textures. A handheld camera is used to collect images in a certain overlapping area. After cylindrical projection, the Harris algorithm based on scale space is adopted to detect image feature points, the two-way normalized cross-correlation algorithm matches the feature points, and the algorithm to extract the threshold T iteratively removes mismatches. The transformation parameter model is quickly estimated through the improved RANSAC algorithm, and the spliced image is projected and transformed. The Szeliski grayscale fusion method directly calculates the grayscale average of the matching points to fuse the image, and finally, the best stitching method is used to eliminate the ghosting at the image mosaic. Data experiments based on Matlab show that the proposed image splicing technology has the advantages of high efficiency and clear spliced images and a more satisfactory panoramic image visual effect can be achieved.Entities:
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Year: 2022 PMID: 35069718 PMCID: PMC8776481 DOI: 10.1155/2022/4775189
Source DB: PubMed Journal: Comput Intell Neurosci
Figure 1Image stitching technology.
Figure 2The way of image acquisition.
Figure 3Coordinate system.
Figure 4Value with different data.
Figure 5Value variation.
Figure 6Error variation.
Figure 7Image process.
Figure 8Process data.
Figure 9The stitched image.