一种基于图像数据的动画帧插值方法及系统

By integrating touch interaction parameters and interface context features, and using a selective state-space model to predict optical flow residuals, the problem of device overheating and stuttering under low computing power in traditional frame interpolation models is solved, achieving efficient generation of intermediate transition frames and improving the user interaction experience.

CN122048997BActive Publication Date: 2026-07-17JIANGSU VOCATIONAL COLLEGE OF BUSINESS

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JIANGSU VOCATIONAL COLLEGE OF BUSINESS
Filing Date
2026-04-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies struggle to handle the significant screen changes caused by rapid user touches in real time with limited device computing power. Traditional frame interpolation models cause device overheating and stuttering, and cannot synchronously perceive the user's dynamic physical operation intentions and interface content deformation, resulting in screen tearing, frame drops, and ghosting.

Method used

By collecting touch interaction parameters, extracting local structural features and global layout context-dependent features, fusing them into multimodal stitching features, using a joint selective state space model to calculate correlation weights, predicting optical flow residuals, generating refined target motion optical flow, and synthesizing intermediate transition frames while maintaining linear computational complexity.

Benefits of technology

It achieves real-time rendering of intermediate transition frames without background ghosting and with physical space deformation alignment under low computing power, improving the human-computer interaction experience and eliminating screen tearing and ghosting.

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Abstract

本发明公开了一种基于图像数据的动画帧插值方法及系统,涉及数据处理技术领域,采集触控交互参数,在预估像素位移量大于视觉流畅度位移阈值时获取关键界面帧,映射出初始运动光流特征并提取交互控件活跃区域,提取关键界面帧的局部结构特征,以交互控件活跃区域为引导提取全局布局上下文依赖特征,融合局部结构特征与全局布局上下文依赖特征生成界面上下文内容特征,将初始运动光流特征与界面上下文内容特征拼接的多模态拼接特征输入联合选择性状态空间模型,计算相关性权重融合出联合空间融合特征,预测光流残差生成精细化目标运动光流,基于精细化目标运动光流扭曲关键界面帧,计算复杂度合成中间过渡帧,输出至显示面板进行渲染。
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