Dynamic Effect Video Linkage for Richer Content
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Solution Overview
Problem
Current image processing technologies for creating effect videos are limited by a scarcity of effect props and poor interactivity between video content and users, resulting in limited effectiveness of video effects.
Innovation Solution
A method and apparatus for determining an effect video that involves acquiring a current video frame, adding a target effect to a target object, and controlling the target effect to be exhibited in linkage with the target object based on specific conditions, enhancing the richness and interactivity of video content.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional effect props are used in video processing, then the implementation is simple, but the richness of video content and user interactivity are limited
Solution Approach 1:
The patent implements dynamic effect exhibition where effects are not statically applied but dynamically controlled based on real-time conditions. The system continuously monitors linkage exhibiting conditions and adjusts effect display accordingly, transforming static effect props into dynamic, context-aware visual elements that adapt to user actions and video content state.
Solution Approach 2:
The system establishes a feedback loop by monitoring linkage exhibiting conditions and using this information to control effect exhibition. The effect display is continuously adjusted based on feedback from condition evaluation, creating an interactive system where effects respond to user actions and video state changes in real-time.
2Ease of operation
If fixed effect props are provided, then the system is easy to operate, but the interactivity between video content and user is poor
Solution Approach 1:
The system automatically evaluates linkage exhibiting conditions and controls effect exhibition without requiring manual user configuration. The effect prop itself manages its display state by self-evaluating conditions and self-adjusting exhibition, reducing operational complexity while enhancing interactivity through automatic response to user actions.
Solution Approach 2:
The effect exhibition transitions from static to dynamic control, where the system automatically adjusts effect display based on real-time condition evaluation. This dynamic behavior enables rich user interactivity while maintaining ease of operation through automated effect management.
3Illumination intensity
If effects are always exhibited, then the visual impact is strong, but the effectiveness and relevance of effects are limited
Solution Approach 1:
The system employs periodic evaluation of linkage exhibiting conditions to control effect exhibition. Rather than continuous display, effects are exhibited periodically when conditions are met, creating rhythmic, condition-based visual impact that maintains relevance and effectiveness while preserving strong visual presence.
Solution Approach 2:
Effect exhibition becomes dynamic and condition-dependent, adjusting visual impact intensity and timing based on real-time evaluation of linkage conditions. This ensures effects are displayed with appropriate intensity when relevant, maximizing both visual impact and effectiveness.
Data Source
AI summary
A method for determining an effect video, an electronic device, and a non-transitory storage medium are provided. The method includes: acquiring, in response to an effect triggering operation, a current video frame to be processed; adding, for a target object in the current video frame to be processed, a target effect; and controlling, in response to meeting a linkage exhibiting condition, the target effect to be exhibited in linkage with the target object, for obtaining a target effect video.


