Display Adjustment Device for Automatic Posture and Location Control
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Solution Overview
Problem
Users face inefficiencies and poor viewing experiences due to fixed display devices that require manual adjustments for optimal font size and viewing angles, affecting working efficiency and user experience.
Innovation Solution
A display adjustment method and device that acquires display information to actively adjust the posture and location of the display, reducing user intervention and enhancing usability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If the display device is kept fixed in position and posture, then the device structure is simple and stable, but the user experience deteriorates when font size is too small or viewing distance is too far
Solution Approach 1:
The display device automatically adjusts its own posture and location based on detected display information without requiring manual user intervention. The system self-regulates by acquiring display information, determining target posture and location, and executing adjustments autonomously, thereby improving ease of operation while avoiding complex manual control mechanisms
Solution Approach 2:
The display device transitions from a static fixed position to a dynamic adjustable state. The posture and location are no longer fixed but can be automatically adjusted based on real-time display information, allowing the display to adapt its configuration dynamically to optimize viewing conditions
2Productivity
If the user manually adjusts the display posture and location, then the device structure remains simple, but working efficiency and user experience are negatively affected
Solution Approach 1:
The system performs preliminary detection of display information and pre-calculates the target posture and location before the user needs to view the content. By acquiring display information in advance and determining the optimal configuration beforehand, the system eliminates the time delay that would occur if adjustment were performed after the user encountered viewing difficulties
Solution Approach 2:
The system establishes a feedback loop where display information is continuously acquired, target posture and location are determined based on this information, and adjustments are made accordingly. This closed-loop control enables automatic optimization of display configuration, improving working efficiency by eliminating manual adjustment delays
3Adaptability or versatility
If the television is placed in a fixed spot, then the device structure is simple and stable, but the effective display area is reduced when vertical version photos are displayed
Solution Approach 1:
The television display transitions from a fixed horizontal orientation to a dynamic configuration that can automatically adjust between horizontal and vertical postures. Based on the detected display information (such as photo orientation), the system rotates the display to the appropriate orientation, thereby adapting to different content types and maximizing the effective display area for various scenarios
Solution Approach 2:
The display device gains multi-functionality by being able to operate in both horizontal and vertical orientations. The automatic posture adjustment capability allows the same display device to optimally display both landscape-oriented content (like scenery photos) and portrait-oriented content (like vertical version photos), enhancing versatility without requiring multiple dedicated devices
Data Source
AI summary
The present application discloses display adjustment methods and devices. One display adjustment method disclosed herein comprises: acquiring display information of a display; and adjusting a posture and/or a location of the display according to the display information. The methods and the devices, which can actively adjust a location and a posture of a display according to display information, reduces adjustment steps to be performed by a user, thus increases use efficiency and improves user experience.


