Dynamic Aerial View Management for Touch-Blocked Displays
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Solution Overview
Problem
In digital interactive large-screen display devices, the aerial view often occupies screen space, blocking the image and interfering with user touch operations when the image is magnified, making it difficult to view details in different orientations.
Innovation Solution
A method that receives touch-operation instructions, determines if the touch track enters a blocking-sensable region, and either provides or moves the aerial view to a different display region to avoid blocking, ensuring uninterrupted touch operations and clear image viewing.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of information
If the aerial view is displayed in a fixed region, then the entire miniature of the image can be seen, but the screen area is occupied and blocks the main image, causing inconvenience for user touch operations
Solution Approach 1:
The aerial view region is transformed from a static fixed position to a dynamic adjustable position. The system detects touch operations on the main image and automatically adjusts the aerial view region's position or size to avoid blocking the touch area, while maintaining the aerial view's visibility function.
Solution Approach 2:
The solution introduces temporal dimension to the aerial view display - the aerial view region can dynamically appear, disappear, resize, or reposition based on user interaction timing. This creates a time-based dimension where the aerial view adapts its display characteristics according to the touch operation state.
2Area of stationary object
If the aerial view is displayed to show the entire miniature image, then full view is achieved, but it blocks the main image and interferes with touch operations
Solution Approach 1:
The aerial view display parameters (position, size, visibility) are made dynamic rather than static. The system continuously monitors touch operations and adjusts the aerial view region accordingly - reducing its area or moving it away from the touch area when needed, while maintaining adequate display area when not interfering.
Solution Approach 2:
The system changes the display parameters of the aerial view region based on detected touch operations. When a touch operation is detected in a certain area, the aerial view region's position coordinate, size dimension, or visibility parameter is adjusted to eliminate the blocking effect while preserving the aerial view functionality.
3Loss of information
If the aerial view occupies screen space, then navigation context is maintained, but it blocks the main image and makes it difficult to view details in different orientations
Solution Approach 1:
The aerial view region dynamically adapts its display characteristics based on the user's viewing and interaction needs. When the user is examining details in the main image, the aerial view region adjusts its position or size to avoid blocking the detailed view area, while still maintaining the overall navigation context through the aerial view.
Data Source
AI summary
The disclosed embodiments provides a method for processing an aerial view, an electronic device, and a storage medium. The method includes: receiving a first touch-operation instruction directed at a main image on a display screen; determining whether a first touch track corresponding to the first touch-operation instruction enters a blocking-sensable region; when the first touch track does not enter the blocking-sensable region, providing an aerial view of the main image in a first aerial view region for display; when the first touch track enters the blocking-sensable region, moving the aerial view from the first aerial view region to a second aerial view region for display, or hiding the aerial view. With the above method, the influence of the interface elements on the display effect can be flexibly eliminated, and the blocking effect can be reduced.


