Mobile Camera Dynamic Picture Capture via Programmable Action Timing
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Solution Overview
Problem
Mobile cameras lack the capability to easily capture dynamic pictures and videos, as they require professional skills and expertise similar to high-end DSLR cameras, limiting users' ability to apply techniques like panning shots and zoom-in shots within a specified time period.
Innovation Solution
A method for photographing dynamic pictures and videos that involves selecting a target, setting a total photographing time and camera action operation time, and applying specific camera actions such as horizontal movements, rotations, or zooms during the set time, allowing users to capture dynamic movements and combine static and dynamic techniques into a single image or video.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If dynamic picture techniques are implemented using high-end DSLR cameras with gimbals or panorama techniques, then the quality and variety of dynamic pictures can be improved, but the device complexity and ease of operation deteriorate
Solution Approach 1:
The patent replaces complex mechanical gimbal systems with software-based camera action operations. Instead of requiring physical gimbals or manual panning movements, the system uses programmable camera actions (panning shot, zoom-in shot, rotation shot, vibration shot) that can be executed through software control, thereby achieving dynamic picture effects without mechanical complexity
Solution Approach 2:
The patent copies the functionality of professional dynamic picture techniques into mobile camera software. By implementing virtual camera actions that simulate panning, zooming, rotating, and vibrating effects through software, the system reproduces expert-level dynamic picture capabilities on mobile devices without requiring the physical infrastructure of high-end DSLR systems
2Adaptability or versatility
If dynamic picture techniques are implemented using high-end DSLR cameras requiring user skill and experience, then the quality of dynamic pictures can be improved, but the ease of operation deteriorates
Solution Approach 1:
The patent enables the camera system to serve itself by automatically executing predefined camera action operations. The system includes built-in logic for performing panning shots, zoom-in shots, rotation shots, and vibration shots without requiring user expertise. The camera autonomously manages the timing, duration, and execution of these actions based on programmed parameters
Solution Approach 2:
The patent allows users to pre-configure camera action operations before actual photographing. Users can set parameters such as action type, duration, and timing in advance, and the system automatically executes these pre-planned operations during photographing. This eliminates the need for real-time manual control and reduces the skill barrier for capturing dynamic pictures
3Manufacturing precision
If camera actions are applied within a specified time period in total photographing time, then the precision of dynamic effects can be improved, but the device complexity increases
Solution Approach 1:
The patent implements dynamic camera actions with precisely controllable timing parameters. Each camera action (panning, zooming, rotating, vibrating) can be configured with specific start times, durations, and execution schedules within the total photographing time. The system dynamically adjusts camera operations based on these temporal parameters to achieve precise dynamic effects at predetermined moments
Data Source
AI summary
Discloses is a method for photographing a dynamic picture and a dynamic video, the method including: (a) selecting a photographing target; (b) setting a total photographing time and a camera action operation time; (c) selecting at least one camera action operation; and (d) photographing a dynamic movement by applying the camera action operation for the set time. Accordingly, various dynamic movements are photographed by selecting the photographing target, setting a time during which a camera action is operated in the total photographing time, and selecting the camera action for the set time.


