Virtual 3D Data Visualization System
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Solution Overview
Problem
Current database systems require specialized expertise to interpret and retrieve user queries, and users face challenges in accessing and understanding the retrieved data, which is often not formatted appropriately for their needs.
Innovation Solution
A system and method that uses a computing device and server to transmit and process database queries, generating a virtual 3D image of the responsive data, allowing users to interact and manipulate the data remotely through a user interface, facilitating easier access and understanding of the data.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Quantity of substance
If data is stored in traditional database formats, then data storage capacity is improved, but data accessibility and understandability for users deteriorates
Solution Approach 1:
The patent introduces a specialized intermediary component (database interface or query processor) that mediates between the user and the database system. This intermediary translates user-friendly queries into database-specific queries, allowing users to access data without needing to understand the underlying database structure or query language, thus resolving the contradiction between storage capacity and accessibility
Solution Approach 2:
The patent transforms the presentation parameters of database data by converting tabular data into visual formats such as graphs, charts, and diagrams. This parameter transformation allows the same data to be stored efficiently in traditional formats while being presented in an easily understandable visual format, thereby improving accessibility without compromising storage capacity
2Measurement precision
If database systems use complex query structures, then data retrieval precision is improved, but system complexity increases
Solution Approach 1:
The patent segments the complex query processing task into multiple simplified components: a natural language processing layer that handles user input, a query translation layer that converts to database queries, and a result processing layer that formats output. This segmentation allows precise data retrieval while keeping each component relatively simple and manageable
Solution Approach 2:
The patent employs an intermediary query translation component that handles the complexity of database query structures. This intermediary automatically translates simplified user queries into precise database queries, maintaining data retrieval precision while shielding users from system complexity
3Quantity of substance
If data is presented in traditional formats, then data storage efficiency is improved, but user understanding and interpretation deteriorates
Solution Approach 1:
The patent changes the presentation parameters of data from traditional tabular formats to visual formats such as graphs, charts, and diagrams. This parameter transformation maintains the efficiency of traditional storage formats while dramatically improving user understanding and interpretation of the data, preventing loss of information in the user's comprehension
4Reliability
If specialized expertise is required for data retrieval, then data security and control are improved, but ease of access for general users deteriorates
Solution Approach 1:
The patent introduces an intermediary layer (natural language processing interface) that sits between users and the database system. This intermediary maintains security and control by managing all database interactions while providing an easy-to-use interface for general users, thus preserving reliability while improving ease of access
Solution Approach 2:
The patent enables self-service data retrieval by allowing users to query the database using natural language without requiring specialized expertise. The system automatically handles query translation, execution, and result formatting, maintaining security controls while making data access easy for general users
Data Source
AI summary
The system, for facilitating access to data in a database, includes a computing device communicatively coupled with a communications network and with the user interface, the computing device configured for transmitting the database query over the communications network; a server communicatively coupled with the communications network, the server configured for: a) receiving the database query transmitted by the computing device, and storing the database query in association with a user record corresponding to the user; b) accessing the database to retrieve responsive data from the database in response to the database query; c) processing the responsive data to produce a virtual 3D image of the responsive data, wherein the 3D virtual image is configured to be manipulated by the user; d) transmitting the 3D image of the responsive data to the computing device over the communications network.
