Wearable Picture Feedback for Faster Pose Adjustment
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
The process of obtaining a satisfactory photograph is time-consuming as users need to repeatedly move between the photographer and the photographed object to view and adjust the imaging effect, leading to inefficiencies and potential suboptimal results.
Innovation Solution
A method and apparatus that enables a mobile phone to transmit the imaging effect of a taken picture to a wearable device, allowing the user to view and adjust the pose and expression directly on the wearable device, thereby improving photographing efficiency and quality.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If the user moves back and forth to view the photographing effect, then the user can see the imaging quality, but the photographing process becomes time-consuming and inefficient
Solution Approach 1:
The patent transmits the imaging effect (picture data) from the photographer's terminal device to the photographed object's wearable device, creating a digital copy of the image for remote viewing. This eliminates the need for physical movement while maintaining accurate visual assessment capability.
Solution Approach 2:
The wearable device acts as an intermediary between the photographer's camera and the photographed object's eyes. It receives and displays the imaging effect data, serving as a mediator that enables remote visual feedback without requiring direct physical proximity.
2Measurement precision
If the user views the photographing effect on the photographer's device, then the imaging quality can be assessed, but the user must physically move to the photographer's location
Solution Approach 1:
The imaging effect is copied and transmitted to the wearable device worn by the photographed object. This allows the user to view the photographing effect at their current location without needing to physically relocate to the photographer's position.
Solution Approach 2:
The system transitions from a single-location viewing model to a multi-location distribution model. The imaging effect is transmitted across spatial dimensions via wireless communication, enabling remote viewing in a different physical location without compromising assessment accuracy.
3Measurement precision
If multiple photographing attempts are made to achieve satisfactory results, then the photograph quality may be improved, but the overall process becomes inefficient and time-consuming
Solution Approach 1:
The system implements real-time feedback by transmitting the imaging effect to the photographed object's wearable device immediately after capture. This allows instant evaluation and rapid iteration, enabling multiple photographing attempts to be made efficiently without the time penalty of physical movement between shots.
Solution Approach 2:
The photographing process becomes continuous rather than discontinuous. The feedback loop (capture → transmit → view → evaluate → retake if needed) flows without interruption, maintaining productive action throughout the process rather than pausing for physical relocation.
Data Source
AI summary
Embodiments of this application provide a picture transmission method and apparatus. A photographer inputs an operation instruction in a user interface of a first electronic device, to select a first picture whose imaging effect needs to be shared. The first electronic device processes the first picture based on specification information of a display of a second electronic device, to obtain each second picture and a posing score that are used to represent the imaging effect of the first picture. Then, the first electronic device sends each second picture and the posing score to the second electronic device, so that a user wearing the second electronic device can view the imaging effect of the first picture, and a photographed object does not need to move back and forth to the photographer to view a photographing effect.


