Customized 3D Art Animation With Tilt-Based Depth Viewing
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Solution Overview
Problem
Existing art experiences lack interactivity and depth, failing to engage users beyond passive viewing and often hindered by obstructions.
Innovation Solution
A user device enhances art experiences with interactive 3D animations, dynamic responses, and obstacle removal, using image recognition and machine learning to provide personalized and immersive interactions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a user device displays a 2D image of an art piece, then the viewing experience is simple and straightforward, but the art experience lacks depth and interactivity
Solution Approach 1:
The patent transforms static 2D art images into interactive 3D experiences by adding depth dimension. The system creates a 3D virtual environment where art pieces can be viewed from multiple angles, explored interactively, and manipulated through gestures, thereby resolving the contradiction between simplicity and interactivity.
Solution Approach 2:
The user device serves as an intermediary between the physical art piece and the user. It captures images of art pieces, processes them into interactive 3D representations, and displays them on a screen, enabling rich interactions without requiring direct contact with the original artwork.
2Ease of operation
If a user device provides interactive 3D animations and dynamic responses, then user engagement is enhanced, but the device complexity increases
Solution Approach 1:
The system automatically detects user actions (such as gestures or device movements) and generates appropriate dynamic responses without requiring complex manual programming. The machine learning models enable the system to self-adapt and respond intuitively to user interactions, simplifying the operation while enhancing engagement.
Solution Approach 2:
The system dynamically changes parameters such as image resolution, animation speed, and visual effects based on user interactions and device capabilities. This adaptive parameter adjustment allows the system to provide engaging experiences while managing processing complexity through intelligent optimization.
3Ease of operation
If a user device removes obstructions from the view, then the viewing experience becomes seamless, but the system complexity increases
Solution Approach 1:
The patent replaces complex mechanical obstruction removal mechanisms with computational methods. Machine learning algorithms and image processing techniques automatically detect and remove obstructions from captured images, creating seamless viewing experiences through software-based solutions rather than physical mechanisms.
Solution Approach 2:
The system creates a digital copy or representation of the art piece that can be manipulated independently of physical obstructions. By working with digital images and 3D models rather than the physical artwork itself, the system can remove obstructions and provide seamless viewing without complex mechanical intervention.
Data Source
AI summary
A method for providing an animated art experience to a user includes a user device receiving an image of an art piece selected by the user. The user device obtains information about the art piece. The user device presents a three-dimensional (3D) animated image that corresponds with the selected art image. Upon receiving an action by the user caused by a rotation or tilt of the user device, the user device provides a depth perspective view in correlation with the action and associated viewer angle of the art image such that further portions of the art image become visible. A background and a foreground of the image appear to move naturally as actions and associated viewer angles change.


