Virtual Reality Motherboard Assembly Platform
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Solution Overview
Problem
Users face challenges in assembling motherboards as existing methods do not consider compatibility between components, leading to potential incompatibility and low performance, with no real-world reference for testing, resulting in errors and inefficiencies.
Innovation Solution
A virtual reality operation platform structure that allows users to virtually assemble and test motherboard components, providing a menu for selecting housings, motherboards, and elements, with modules for checking performance, clearing selections, and accounting for accurate purchasing, thereby reducing errors and saving time.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If users select components based on store descriptions and network information, then users can freely select components according to cost and scale, but users cannot accurately judge compatibility and performance, leading to assembly errors and low performance
Solution Approach 1:
The patent creates a virtual copy of the physical motherboard assembly environment. Users can select and assemble virtual components in a simulated space that replicates real assembly conditions, allowing them to test compatibility and performance before actual purchase and assembly, thus resolving the contradiction between selection freedom and assembly reliability
Solution Approach 2:
The system performs preliminary virtual assembly and testing before real-world assembly. Users can pre-test component compatibility and performance in the virtual environment, identify potential issues, and adjust selections accordingly, preventing assembly errors before they occur in the physical domain
2Productivity
If users assemble motherboards without virtual testing, then the assembly process is simple and quick, but the error rate increases and performance cannot be optimized
Solution Approach 1:
By creating a virtual replica of the assembly process, the system allows users to perform multiple test assemblies without time penalty. The virtual environment replicates all assembly constraints and component interactions, enabling precision optimization without sacrificing real-world assembly speed
Solution Approach 2:
The virtual assembly and testing process is performed preliminarily before actual assembly. Users can optimize their component selections and assembly approaches in the virtual environment, ensuring high precision in the first real assembly attempt, thus maintaining both speed and accuracy
3Ease of operation
If users rely on network descriptions and store information for component selection, then the selection process is convenient, but burning motherboard and low performance issues occur due to lack of real goods reference
Solution Approach 1:
The patent replaces reliance on textual descriptions with interactive virtual models. Users can visually inspect component details, test compatibility through virtual assembly, and evaluate performance metrics in the simulated environment, providing a more reliable basis for decision-making while maintaining ease of selection
Solution Approach 2:
The system provides immediate feedback on component compatibility and performance through the virtual assembly interface. When users select components, the system automatically checks compatibility constraints and displays performance predictions, allowing users to adjust selections based on real-time feedback before making final decisions
Data Source
AI summary
A virtual reality operation platform structure comprises a main virtual frame, a virtual reality operation processing module, a menu module, an output checking module, a clearing module, and an accounting module. The menu module is built-in the main virtual frame and includes a housing menu defaulted a plurality of housings, a motherboard menu defaulted a plurality of motherboards, and a heat dissipation assembly menu defaulted a plurality of elements. Each element is virtually electrically coupled to the motherboard with the virtual reality operation processing module. The output checking module is connected to the menu module for checking an output performance of the motherboard and then generating a performance form. The clearing module is connected to the menu module for processing the re-selection of the menu module. The accounting module is connected to the menu module and generates a list.


