3D Shopping Interface With On-Demand Model Loading to Reduce Lag
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Solution Overview
Problem
Existing 3D model shopping interfaces experience significant lag and delay due to large and diverse data volumes, which are not efficiently processed by varying user device resources, leading to a poor user experience and low conversion rates.
Innovation Solution
A display method and system that utilizes a 3D framework vector diagram to initially show the surface appearance, with interactive operations triggering data packet downloads and parsing only when user interest is confirmed, adapting to device resources and reducing unnecessary processing.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If all 3D model data is loaded and processed uniformly, then complete product information is displayed, but system processing pressure increases significantly and lag occurs
Solution Approach 1:
The patent segments the 3D model data into multiple data packets corresponding to different local positions of the product. Instead of loading the entire model at once, the system divides it into manageable portions that can be loaded and processed on-demand based on user interaction, reducing initial processing pressure while maintaining complete information availability.
Solution Approach 2:
The patent performs preliminary actions by pre-dividing the 3D model into structured data packets and preparing them for selective loading. The framework diagram is prepared in advance with marked local positions, enabling rapid on-demand loading of specific data packets without requiring complete model processing upfront.
2Loss of information
If complex 3D model data is continuously processed, then detailed product information is available, but processing delay and lag increase
Solution Approach 1:
The system performs preliminary organization of 3D model data into structured packets associated with specific local positions. This pre-processing enables rapid retrieval and display of relevant product details when users interact with specific areas of the framework diagram, eliminating the need for continuous complex processing while maintaining information completeness.
Solution Approach 2:
The system implements self-service by automatically detecting user interaction positions and triggering the loading of corresponding data packets without requiring additional user requests. The framework diagram itself serves as the interaction interface, where user clicks or hovers automatically initiate the appropriate data retrieval and display process.
3Adaptability or versatility
If unified data loading method is used, then all devices can display 3D models, but devices with limited resources experience significant lag
Solution Approach 1:
The patent segments the 3D model data into multiple data packets that can be selectively loaded based on device resources. This segmentation allows the system to adapt to different device capabilities by loading only the necessary portions of data, ensuring compatibility across diverse devices while maintaining smooth user experience through reduced processing demands.
Solution Approach 2:
The system implements dynamic data loading that adapts to device resources in real-time. Based on detected device capabilities and current interaction context, the system dynamically adjusts which data packets are loaded and processed, providing optimized performance for each device type while maintaining consistent functionality across the platform.
4Loss of information
If complete 3D model data is parsed and displayed, then full product information is presented, but conversion rate decreases due to lag
Solution Approach 1:
The system performs preliminary organization of product information into structured data packets associated with the framework diagram. This pre-processing enables rapid display of complete product information on-demand without continuous processing delays, improving the shopping experience and conversion rate while maintaining information completeness.
Solution Approach 2:
The system implements feedback mechanisms by monitoring user interaction with the framework diagram and automatically loading relevant data packets. This feedback-driven approach ensures that complete product information is presented precisely when users show interest, eliminating unnecessary processing delays and improving conversion rates by providing information at the optimal moment.
Data Source
AI summary
The invention proposes a display method and customization system for a 3D model shopping interface. The method comprises the following steps: S100: display at least one candidate shopping target in response to shopping search keywords entered by the user; S200: enter a 3D model shopping display interface in response to the user's selection of the first candidate shopping target; S300: download a first data packet from the server if the first interactive operation of the user on a first local position is detected; S400: parse the first data packet and display the parsing result thereof if no second interactive operation of the user on the second local position is detected during the period from the start of downloading the first data packet to the completion of downloading. The customization system is configured with a 3D model shopping application. The invention can reduce lag and delay and adapt to user devices.


