Multi-Depth Image Display Tree Structure Segmentation
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Solution Overview
Problem
Existing multi-depth image display technologies face challenges in effectively conveying detailed information and accommodating user preferences, as they struggle to accurately display multi-depth images on small screens and modify the display order based on individual user interests.
Innovation Solution
A multi-depth image display device and method that organizes images in a tree structure, allowing users to select between microblog and feed formats, with synchronized display areas for images and multimedia content, enabling customizable information delivery and improved user convenience.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of information
If multi-depth images are displayed with multiple images and objects on small screens, then information delivery capability is improved, but display clarity and user comprehension deteriorate due to screen space limitations
Solution Approach 1:
The display area is segmented into multiple functional zones: a first display area showing the main image, a second display area showing sub-images, a third display area showing objects, and a fourth display area showing text. This segmentation allows comprehensive information delivery while maintaining organization and clarity on small screens by distributing different types of content across dedicated spatial zones.
2Loss of information
If multiple images and objects are displayed simultaneously to convey detailed information, then information completeness is improved, but display complexity increases making it difficult for users to comprehend
Solution Approach 1:
The display is segmented into four distinct areas with specific functions: main image display, sub-image display, object display, and text display. This segmentation reduces perceived complexity by organizing information into logical groups that users can process separately rather than overwhelming them with all elements simultaneously.
Solution Approach 2:
Each display area is optimized for its specific content type with appropriate visual characteristics. The first area emphasizes the main image, the second area presents sub-images in a gallery format, the third area highlights objects with visual markers, and the fourth area provides textual information. This local optimization ensures each type of information is presented in the most suitable format for its nature.
3Ease of operation
If the display order of multi-depth images is customized according to user preferences, then user convenience is improved, but system complexity increases due to need for user preference management
Solution Approach 1:
The display system dynamically adapts to user preferences by allowing customization of the order in which sub-images and objects are displayed. The system can adjust the sequence based on user interactions, preferences, or relevance metrics, making the information delivery process flexible and user-centric without requiring complex manual configuration by the user.
Solution Approach 2:
The system automatically manages the display order based on user preferences and interaction patterns, eliminating the need for users to manually configure complex display settings. The system self-adjusts the presentation sequence to match user interests and behaviors, providing personalized information delivery without increasing user burden.
4Loss of information
If synchronized display areas are implemented for images and objects, then information coherence is improved, but processing requirements and energy consumption increase
Solution Approach 1:
The synchronized display updates occur periodically or event-driven rather than continuously. When the main image changes or user interaction occurs, the system periodically refreshes the related sub-images, objects, and text in the respective display areas. This periodic update mechanism maintains information coherence while significantly reducing energy consumption compared to continuous real-time synchronization.
Data Source
AI summary
A method is provided for displaying a multi-depth image in which one or more images are inserted into a main image in a tree structure and one or more objects are mapped to at least some of the one or more images. The method comprises generating at least one content tree from the tree structure of the multi-depth image; and configuring a display area corresponding to each of the at least one content tree. The display area includes a first area for displaying an image corresponding to each node of the content tree, and a second area for displaying an object corresponding to each node of the content tree or a playback user interface (UI) of the object. The first area and the second area respectively display the image and the object mapped thereto or the playback UI in synchronization with each other.


