3D Object Reproduction Control for Multi-Angle Interactive Viewing
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Solution Overview
Problem
Existing three-dimensional scanning and modeling technologies fail to accurately capture object texture and size, leading to low precision and inadequate 360-degree interactive display, resulting in poor user experiences.
Innovation Solution
A control method and device that utilize multiple direction control parameters, including visual angle and time controls, to acquire and process high-precision image information, enabling omnibearing and interactive reproduction of target objects.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If traditional three-dimensional scanning and modeling is used, then the presentation form is simple, but the accuracy of collecting texture and size is low, resulting in poor 3D rendering effects
Solution Approach 1:
The patent divides the image acquisition process into multiple segments: acquiring images at different visual angles (first image information) and at different acquisition distances (second image information). This segmentation allows each segment to focus on specific aspects of the object, improving overall measurement precision while maintaining manageable system complexity through structured data collection.
Solution Approach 2:
The patent transitions from traditional single-view 2D imaging to multi-dimensional 3D image acquisition by introducing visual angle dimensions and acquisition distance dimensions. This dimensional expansion enables comprehensive capture of object texture and size information from multiple perspectives, significantly improving measurement precision without requiring overly complex scanning hardware.
2Adaptability or versatility
If traditional three-dimensional presentation method is used, then the presentation form is simple, but 360-degree all-round interactive display is not achieved, leading to poor user experiences
Solution Approach 1:
The patent creates a universal image information database that stores images from multiple visual angles and distances, making the system adaptable to various interactive display scenarios. This multi-functional database structure enables 360-degree all-round display while using a single unified system architecture, avoiding the need for multiple specialized devices.
Solution Approach 2:
The patent performs preliminary image acquisition and processing before interactive reproduction is needed. By pre-acquiring images at multiple visual angles and distances and storing them in an organized database with attribute numbers, the system prepares all necessary data in advance, enabling smooth 360-degree interactive display without adding real-time processing complexity.
3Manufacturing precision
If multiple direction control parameters are used to acquire high-precision image information, then interactive reproduction precision is improved, but the complexity of control parameters increases
Solution Approach 1:
The patent systematically changes and organizes control parameters into structured categories: visual angle parameters, acquisition distance parameters, and time parameters. By transforming these parameters into an organized system with attribute numbers and predefined ranges, the patent achieves high interactive reproduction precision while making the parameter system more manageable and less complex through standardization.
Data Source
AI summary
A control method, device, equipment and storage medium for interactive reproduction of a target object is provided. The control method comprises: acquiring a control instruction of the target object, the control instruction including a plurality of direction control parameters; acquiring target image information of the target object according to the combination of the plurality of direction control parameters, the target image information being acquired through a preset three-dimensional reproduction method; performing interactive reproduction on the target object based on the direction control parameters and the target image information. Through acquiring any combination of the plurality of control parameters input by a user according to an interaction requirement, the movement and reproduction of the target object in multiple directions and under any visual angle based on the high-precision target image information obtained based on the preset three-dimensional reproduction method at any moment or within a period of time can be controlled.


