共光心拼接方法及其装置

By determining marker points between the stitching mirrors and calibrating with a panoramic camera, combined with physical adjustment mechanisms and image processing, low-cost coaxial panoramic image stitching was achieved, solving the problems of stitching discontinuity and feathering immersion bands, and maintaining the integrity and proportional consistency of speakers in video conferences.

CN116112802BActive Publication Date: 2026-07-17上海赛连信息科技有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
上海赛连信息科技有限公司
Filing Date
2022-11-11
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, multi-camera stitching systems cannot achieve seamless panoramic image stitching, suffer from parallax problems and feathering at the image stitching position, and are also costly, making it difficult to maintain the integrity of speakers in video conferences.

Method used

By determining marker points between the splicing mirrors, the image splicing position is precisely calibrated using a common optical center image acquisition array and a panoramic camera. Combined with a physical splicing adjustment mechanism and image processing software, low-cost and accurate image splicing can be achieved. FA industrial lenses and short focal length lenses are used to adjust the field of view, solving the problem of standing personnel not falling out of the frame.

Benefits of technology

It achieves high-quality co-optical panoramic image stitching, reduces costs, solves the feathering and immersion band problem at the image stitching position, and maintains the integrity and proportional consistency of the speaker in the picture.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明提供了一种共光心拼接方法及其装置。其中所述方法包括:利用物理拼接调节机构调节共光心图像采集阵列,获得调节后的共光心图像采集阵列;利用调节后的共光心图像采集阵列进行图像采集获得带有标志点的共光心图像;根据共光心图像上标志点粗略确定第一拼接线;利用全景摄像机进行图像采集获得全景图像;将共光心图像与全景图像进行对比获得图像重合度;基于图像重合度在第一拼接线附近精确确定第二拼接线;根据第二拼接线对共光心图像拼接边缘进行裁切获得裁切后共光心图像,并将其按照裁切后的边缘进行拼接获得拼接后共光心图像。本发明的共光心拼接方法有效实现了共光心图像拼接位置的低成本精准确定,解决了图像拼接位置羽化浸染带问题。
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