Display Control Apparatus Superimposing Diffused Firework Animations
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Solution Overview
Problem
Existing display technologies fail to enhance user engagement by providing monotonous movement of user-drawn images in three-dimensional coordinate spaces, leading to decreased interest and curiosity.
Innovation Solution
A display control apparatus that generates and superimposes a diffused image of user input onto a semitransparent image with a recognizable contour, combined with a firework animation, creating an immersive experience by simulating the user's image as part of a fireworks display.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a mechanism is provided that makes the user-drawn image move in three-dimensional coordinate space, then the user can have greater expectations and curiosity, but the movement becomes monotonous and the user loses interest
Solution Approach 1:
The patent applies dynamics by transitioning from static or simple linear movement to complex dynamic movement patterns. The system generates organic, natural-looking movements that simulate real-world physics, making the user-drawn images move in unpredictable yet visually appealing ways throughout the three-dimensional space, thereby maintaining user interest without excessive complexity
Solution Approach 2:
The system changes multiple movement parameters simultaneously including position, velocity, acceleration, rotation, and scale. By dynamically adjusting these parameters based on simulated physical laws and random factors, the system creates varied and engaging movement patterns that prevent monotony while maintaining computational efficiency
2Ease of operation
If the user image is displayed with simple movement in three-dimensional space, then the display is easy to understand, but the user interest and curiosity are not enhanced
Solution Approach 1:
The patent transitions from two-dimensional static images to three-dimensional dynamic displays. By adding the depth dimension and temporal dimension (movement over time), the system creates immersive visual experiences that maintain conceptual simplicity while dramatically enhancing user engagement through spatial and temporal variations
3Adaptability or versatility
If complex animations are added to enhance user engagement, then user interest increases, but the processing complexity and computational resources increase
Solution Approach 1:
The system extracts and applies only the essential physical laws needed for realistic movement simulation, such as gravity, momentum, and collision detection. By focusing on core physical principles rather than implementing all possible complex animations, the system achieves high user engagement with optimized computational resource usage
Data Source
AI summary
A display control apparatus includes circuitry. The circuitry receives a user image input to the display control apparatus, the user image including a portion drawn by a user. The circuitry generates a first image based on the user image, the first image being obtained by diffusing one or more pixels of a plurality of pixels defining the user image in time series. The circuitry generates a second image based on the user image, the second image is an image based on which a figure pattern of the user is identifiable and that includes a contour of the user image. The circuitry displays the second image at one position on a screen. The circuitry displays the first image at a counter position of the one position displaying the second image on the screen, the first image being superimposed on the second image.


