Dynamic Image Display Scheme Control for Power Optimization
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Solution Overview
Problem
Current terminal image display technologies face challenges in balancing power saving and display quality, as fixed image display schemes struggle to adapt to varying scenes and user interactions effectively.
Innovation Solution
A method for determining a target image display scheme based on the currently displayed image and user operations, which includes parameters such as color, transparency, contrast, and refresh rate, to optimize image display effects while minimizing power consumption.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a fixed image display scheme is used, then device complexity is reduced, but image display quality cannot be optimized for different scenes
Solution Approach 1:
The patent implements dynamic adjustment of image display schemes based on scene recognition and user operations. The system transitions from fixed display parameters to dynamically adaptable parameters including brightness, contrast, saturation, and refresh rate, allowing the display to automatically optimize for different scenes (gaming, video, browsing) while maintaining manageable complexity through automated control algorithms.
2Manufacturing precision
If high refresh rate and resolution are used, then image display quality is improved, but power consumption increases
Solution Approach 1:
The patent dynamically changes display parameters (brightness, contrast, saturation, refresh rate) based on the recognized scene type and user operations. For power-intensive scenarios like gaming or video playback, the system adjusts parameters to provide high quality when needed, while reducing parameters during less demanding tasks to conserve power, thus resolving the contradiction between display quality and power consumption.
Solution Approach 2:
The system periodically evaluates the current scene and user operations to determine optimal display parameters, adjusting them in response to changing conditions. This periodic adaptation allows the display to maintain high quality during intensive usage while conserving power during normal operations, rather than maintaining maximum settings continuously.
3Manufacturing precision
If display parameters are dynamically adjusted, then image display quality is optimized, but device complexity increases
Solution Approach 1:
The patent implements a self-service mechanism where the system automatically recognizes scenes and adjusts display parameters without requiring manual user configuration. The device monitors user operations and scene characteristics, then autonomously selects and applies appropriate display schemes, reducing the perceived complexity for users while maintaining optimized display quality across different usage scenarios.
Data Source
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AI summary
A method for controlling image display is provided. The method may include determining a target image display scheme based on at least one of a currently displayed image and a user operation, and processing and displaying a to-be-displayed image based on the target image display scheme. The target image display scheme may contain one or more parameters related to image display effects.