Adaptive Virtual Scene Button Sizing via Touch Area Detection
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Solution Overview
Problem
Current virtual scene display technologies require manual adjustment of button sizes, which is cumbersome and affects the efficiency of human-computer interaction, leading to poor user experience due to differences in finger sizes among users.
Innovation Solution
An adaptive display method and apparatus that automatically adjusts button sizes in a virtual scene based on detected touch areas, eliminating the need for manual adjustments and improving interaction efficiency.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If manual adjustment of button sizes is implemented, then button sizes can be customized for different users, but the operation process becomes cumbersome and interaction efficiency decreases
Solution Approach 1:
The system automatically detects the user's finger size and adjusts button sizes without manual intervention. The electronic device performs self-service by using the touch detection unit to measure the user's touch area and the processing unit to automatically generate adapted button sizes, eliminating the need for users to manually adjust each button.
Solution Approach 2:
The system changes the size parameter of buttons based on detected touch areas. The processing unit calculates adapted button sizes by comparing the detected touch area with standard button sizes and adjusts the button parameters accordingly, allowing dynamic parameter adaptation without manual operation.
2Manufacturing precision
If manual adjustment of button sizes is required, then precise button sizes can be achieved, but the time consumption increases and interaction efficiency decreases
Solution Approach 1:
The system performs preliminary detection of the user's touch area before the actual interaction begins. The touch detection unit measures the user's finger size in advance, and the processing unit pre-calculates the adapted button sizes, so that when interaction starts, the buttons are already optimized for the user without requiring any adjustment time.
Solution Approach 2:
The system replaces the mechanical manual adjustment process with an automated detection and calculation system. Instead of users manually measuring and adjusting button sizes, the electronic device uses its touch detection unit and processing unit to automatically determine and apply the optimal button sizes, substituting mechanical operation with electronic automation.
3Device complexity
If standardized button sizes are used, then device complexity is reduced, but adaptability to different user finger sizes decreases
Solution Approach 1:
The system maintains a standardized button configuration that can serve multiple user types through automatic adaptation. The single touch detection unit and processing unit serve the universal function of detecting any user's finger size and calculating appropriate button sizes, making the system universally adaptable without requiring multiple predefined configurations.
Solution Approach 2:
The system transitions from static standardized button sizes to dynamic adapted button sizes. The button sizes are no longer fixed but dynamically adjusted based on the detected user's touch area, allowing the interface to adapt in real-time to different users while maintaining the same underlying detection and processing mechanisms.
Data Source
AI summary
An adaptive display method and apparatus for a virtual scene, an electronic device, a computer-readable storage medium, and a computer program product are provided, and the method includes: displaying a virtual scene and a plurality of buttons with different sizes; obtaining, in response to touch operations on the plurality of buttons with different sizes, touch areas corresponding to the touch operations; and updating and displaying the virtual scene, sizes of buttons included in the updated virtual scene being adapted to the touch areas corresponding to the touch operations.


