3D Cubic Space Region Dynamic Adjustment
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Solution Overview
Problem
User experience with existing 3D display functions on electronic devices is poor due to limited interactivity and adjustment capabilities.
Innovation Solution
A control method and device that respond to trigger events to display and adjust three-dimensional cubic space regions based on user input, allowing for volume and shape adjustments, and display the adjusted regions on the screen, enhancing user interaction and experience.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If existing 3D display functions are implemented, then 3D display capability is provided, but user experience is poor due to limited interactivity and adjustment capabilities
Solution Approach 1:
The patent implements dynamic adjustment of 3D cubic space regions by allowing users to modify volume and shape parameters in real-time. The system transitions from static 3D display to dynamic interactive adjustment, enabling users to expand, contract, and reshape cubic space regions based on their preferences and requirements.
Solution Approach 2:
The patent enables users to adjust key parameters of the 3D cubic space regions including volume, shape, and spatial position. By providing parameter adjustment capabilities, the system allows users to customize the 3D display experience, changing the characteristics of cubic space regions to match different viewing conditions and preferences.
2Adaptability or versatility
If 3D cubic space region adjustment is added, then user interactivity is improved, but system complexity increases
Solution Approach 1:
The patent divides the 3D cubic space region into adjustable components, allowing independent modification of volume and shape parameters. This segmentation enables granular control over the 3D display space, making the adjustment process more manageable and less complex than redesigning the entire system.
Solution Approach 2:
The patent implements a multi-functional adjustment mechanism that handles various types of interactions (volume adjustment, shape modification, position changes) through a unified interface. This universal approach reduces system complexity by consolidating multiple adjustment functions into a single coherent system rather than requiring separate mechanisms for each function.
Data Source
AI summary
A control method includes responding to a first trigger event to control a screen to display a set three-dimensional (3D) cubic space region, responding to an operation on the set 3D cubic space region to obtain adjustment information of the set 3D cubic space region, adjusting the set 3D cubic space region based on the adjustment information to obtain an adjusted 3D cubic space region, and controlling the screen to display the adjusted 3D cubic space region.


