方向感知双路径偏移决策与连续性恢复方法及其应用

By establishing a direction-aware dual-path offset decision mechanism under serpentine scanning conditions, dynamically constructing candidate paths and triggering adjacency inheritance and backfilling mechanisms, the problems of image block splicing misalignment and state breakage in serpentine scanning are solved, and the continuity of image blocks is restored.

CN122199258BActive Publication Date: 2026-07-17SHENZHEN SHENGQIANG TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN SHENGQIANG TECH
Filing Date
2026-05-18
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Under serpentine scanning conditions, existing technologies are prone to causing misalignment of image blocks and breakage of the continuity of the entire image, lacking an effective local positioning replacement and restoration mechanism.

Method used

By establishing predecessor relationships based on the actual scanning direction, horizontal and vertical candidate paths are dynamically constructed. Valid paths are selected using matching calculations and deterministic rules. When a path fails, an adjacency inheritance and successor backfilling mechanism is triggered to maintain the continuity restoration of image patches.

Benefits of technology

It effectively avoids misjudgment of reverse scan lines, ensures the continuous recovery of image blocks, avoids the entire state tomography, and is suitable for online continuous scanning scenarios.

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Abstract

本发明提出了一种方向感知双路径偏移决策与连续性恢复方法及其应用,针对扫描方向反转导致拼接错位及单一路径失效引发断层的问题,本发明基于真实扫描方向建立前驱关系,并动态构建横向与纵向候选路径;通过匹配计算,按确定性规则优选有效路径以确定图像块的最终累计偏移状态;双路径失效时触发邻接继承以维持状态传播,并在后继成功时利用单跳回填修复前驱失效状态。本发明消除了反向扫描误判,避免整片状态断层。
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