Dynamic Execution Mode Selection for Mobile Object Management
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Solution Overview
Problem
Existing mobile and stationary devices face challenges in providing an intuitive and efficient user interface for executing and managing objects on a display, particularly in handling various execution modes and displaying notification messages effectively.
Innovation Solution
A method and device that allow users to execute objects on a display by selecting from multiple execution modes based on user inputs, such as touch, drag, and pinch gestures, enabling operations like selecting, copying, and moving objects, while also displaying notification messages and application results in a user-friendly manner.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If multiple execution modes are provided for objects on display, then user interaction flexibility is improved, but device complexity increases
Solution Approach 1:
The patent implements dynamic execution mode selection where the system automatically adapts between different execution modes (first execution mode for notification display, second execution mode for application execution) based on real-time detection of user input types. The controller dynamically determines which mode to activate by monitoring touch gestures, drag operations, and pinch movements, allowing the device to flexibly respond to varying user intentions without requiring manual mode switching or complex configuration settings.
2Ease of operation
If object enlargement is implemented for application execution, then user interface intuitiveness is improved, but display management complexity increases
Solution Approach 1:
The patent utilizes spatial dimension transformation by enlarging the selected object from its original size on the display to a magnified state that occupies a larger portion of the screen. This dimensional change provides visual feedback that confirms application execution while maintaining clear association between the object and its functionality. The enlargement occurs in the spatial domain, creating a distinct visual state that differentiates executed applications from non-executed objects without requiring additional interface layers or complex control mechanisms.
3Loss of information
If notification messages are displayed during object execution, then information completeness is improved, but user interface clarity decreases
Solution Approach 1:
The patent segments the display into functionally distinct regions: the enlarged object region for application execution and a separate notification region for displaying notification messages. This spatial segmentation allows notification information to be delivered completely without interfering with the primary application execution interface. The notification messages are positioned in a dedicated area that does not overlap with the enlarged object, maintaining interface clarity while ensuring no information is lost.
Data Source
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AI summary
A method and a device for executing an application. The method comprises displaying an object on a display and receiving a user input related to the object. In response to the user input the size of the object is changed.