VR experience system and method for construction space
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Solution Overview
Problem
Existing VR technologies for construction and interior design provide limited direct perception and interaction, hindering users' ability to quickly design and renovate indoor or outdoor spaces in a virtual environment.
Innovation Solution
A VR experience system comprising a virtual object database, controlling module, selecting module, generating module, and displaying module, which allows users to select and interact with virtual objects based on style descriptions and indoor data, enabling real-time virtual space design and renovation.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of information
If conventional CAD and 3D virtual reality integration is used, then users can view interior design remotely through computer devices, but the direct perception and immersion experience is insufficient
Solution Approach 1:
The patent replaces conventional 2D/3D graphical interfaces on computer devices with a full-immersion virtual reality system. Users wear VR headsets to enter a completely immersive virtual construction site environment, replacing the mechanical interaction of viewing screens with direct sensory immersion in the virtual space, thereby restoring lost perception information through multi-sensory engagement.
Solution Approach 2:
The patent transitions from 2D computer screens to 360-degree 3D virtual reality space, adding spatial dimensions to the user experience. The system creates a volumetric virtual construction site where users can move freely and view designs from any angle, transforming the flat visual experience into a multi-dimensional immersive environment that restores peripheral vision and spatial awareness.
2Manufacturing precision
If detailed virtual object selection and customization is enabled, then design accuracy and user satisfaction improve, but design time and operational complexity increase
Solution Approach 1:
The system pre-loads comprehensive material libraries, construction element databases, and design templates into the virtual environment before the user arrives. Common construction materials, furniture items, and design configurations are prepared in advance and immediately accessible, eliminating the need for users to search or load resources during the design process, thus maintaining high design accuracy without increasing time consumption.
Solution Approach 2:
The virtual reality system provides automated material recommendations, real-time design validation, and intelligent configuration suggestions based on user selections. The system automatically checks design constraints, suggests compatible materials, and adjusts configurations, reducing the operational burden on users while maintaining high design precision and enabling rapid iteration.
Data Source
AI summary
A VR experience system for construction space includes: a virtual object database for storing a plurality of virtual objects; a virtual object controlling module for receiving an operating instruction of a service provider; a virtual object selecting module for executing the operating instruction of the service provider and selecting the virtual objects from the virtual object database; a virtual object generating module for generating a virtual space and generating the virtual objects in the virtual space; and a virtual object displaying module for displaying the virtual space and the virtual objects.


