Multi-Lens Video Recording Settings for Independent Beauty Processing
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Solution Overview
Problem
Conventional video recording systems only perform beauty processing on one channel of video picture, leading to poor user experience in multi-lens video recording modes.
Innovation Solution
A method and device that allows beauty processing on multiple channels of video pictures by enabling user operations to adjust and switch beauty effects independently for each camera lens, including frame rate adjustments and display ratios, enhancing user control over multi-lens video recording settings.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If beauty processing is performed on only one channel of video picture in multi-lens video recording mode, then the processing complexity is reduced, but the user experience deteriorates
Solution Approach 1:
The patent divides the beauty processing system into independent channels, with each camera lens (front-facing and rear-facing) having its own beauty processing module. This allows simultaneous beauty processing on multiple video channels without overwhelming complexity, as each channel can be processed independently with dedicated controls and parameters.
Solution Approach 2:
The patent implements dynamic control mechanisms that allow users to switch between different beauty processing modes (single-channel vs. multi-channel) and adjust processing parameters in real-time. The system dynamically adapts the number of active processing channels based on user selection, enabling flexible adjustment between simplicity and enhanced functionality.
2Ease of operation
If beauty processing is performed on multiple channels of video picture, then the user experience is improved, but the processing complexity increases
Solution Approach 1:
The patent divides the beauty processing system into independent channels, with each camera lens (front-facing and rear-facing) having its own beauty processing module. This allows simultaneous beauty processing on multiple video channels without overwhelming complexity, as each channel can be processed independently with dedicated controls and parameters.
Solution Approach 2:
The patent creates a universal beauty processing framework that can handle both single-channel and multi-channel processing through the same system architecture. The same core processing modules and user interface mechanisms work for both modes, reducing overall system complexity while enabling enhanced multi-channel functionality when needed.
3Adaptability or versatility
If independent beauty effect adjustment is provided for each camera lens, then the adaptability is improved, but the interface complexity increases
Solution Approach 1:
The patent divides the beauty processing system into independent channels, with each camera lens (front-facing and rear-facing) having its own beauty processing module. This allows simultaneous beauty processing on multiple video channels without overwhelming complexity, as each channel can be processed independently with dedicated controls and parameters.
Solution Approach 2:
The patent organizes the interface by adding a dimensional layer of organization, grouping related controls and parameters together in a structured manner. By arranging the interface in distinct sections for each camera lens and using hierarchical organization, the system manages the complexity of multiple adjustment parameters while maintaining high adaptability.
Data Source
AI summary
This application provides a video recording setting method. The method includes: displaying, by the electronic device, a first video picture, a second video picture, and a first control; displaying, by the electronic device, a second control, a third control, and a fourth control in response to a first user operation performed on the first control, where the second control is displayed in a selected state, and the third control is displayed in an unselected state; stopping displaying, by the electronic device, the first video picture in response to a third user operation; and displaying, by the electronic device, the second control, the third control, and a fifth control in response to a fourth user operation performed on the first control, where the second control is displayed in an unselected state, and the third control is displayed in a selected state.


