Live Broadcast Virtual Item Customization via Segmentation
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Solution Overview
Problem
Existing live broadcast systems offer monotonous display effects for virtual items, limiting user interaction and customization options.
Innovation Solution
A method for displaying virtual items on a live broadcast interface, allowing users to customize and generate virtual items based on custom content, including text, graphics, descriptions, and images, with features extraction and regulation to create personalized and visually appealing items.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If users select from constant preset virtual items, then the system operation is simple, but the display effect becomes monotonous and lacks customization
Solution Approach 1:
The virtual item generation process is segmented into two modes: selection mode for preset items and customization mode for user-created items. This segmentation allows the system to provide both simple preset options and complex customization capabilities without overwhelming the user, resolving the contradiction between ease of operation and adaptability.
Solution Approach 2:
The system dynamically switches between different operational states based on user needs. The virtual item generation interface can transition between displaying preset items and enabling customization features, allowing the system complexity to adapt to the user's current requirements rather than being fixed at maximum or minimum levels.
2Adaptability or versatility
If users can customize virtual items with text and graphics, then the display effect is enriched, but the operation complexity increases
Solution Approach 1:
The system provides preset virtual items that users can directly select and use without customization. These presets serve as ready-made templates that replicate professionally designed virtual items, allowing users to achieve rich display effects without engaging in complex customization operations.
Solution Approach 2:
The customization interface allows users to modify specific parameters of virtual items such as text content, graphics, colors, and animations. By providing controlled parameter adjustment rather than complete free-form creation, the system enables display effect enrichment while maintaining operational simplicity through guided parameter modification.
3Manufacturing precision
If the system processes custom content through feature extraction and regulation, then the virtual item quality improves, but the processing time increases
Solution Approach 1:
The system performs feature extraction and content regulation operations in advance during the virtual item generation process, before the item is displayed. By pre-processing the custom content and preparing the regulated virtual items ahead of time, the system ensures high quality output without causing noticeable delays during actual use, as the processing work is completed beforehand.
Solution Approach 2:
The system implements optimized processing algorithms that quickly extract essential features from custom content and apply necessary regulations. By rushing through the critical processing steps with efficient algorithms and prioritizing key operations, the system maintains high virtual item quality while minimizing the time loss during generation.
Data Source
AI summary
The present disclosure relates to a method for displaying a virtual item, a terminal and a storage medium. The method includes: receiving an instruction for customizing a virtual item; displaying a window on the live broadcast interface in response to the instruction; acquiring a custom content through the window input by the first user, wherein the custom content is configured to define a form of the virtual item; generating the virtual item based on the custom content; and displaying the virtual item on the live broadcast interface.


