AI Line Diagram Conversion Platform for Interactive Electrical Wiring
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Solution Overview
Problem
Existing line diagram processing systems fail to effectively convert static electrical wiring diagrams into interactive formats, limiting user access to additional data and information related to equipment within the diagrams.
Innovation Solution
A line diagram conversion platform that uses AI equipment detection and text extraction functions to generate interactive single line diagram display data, replacing equipment tags with interactive buttons and providing visual indications and equipment information, which can be accessed through a graphical user interface.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If static electrical wiring diagrams are used, then device complexity is reduced, but user interaction and data accessibility are limited
Solution Approach 1:
The patent creates an interactive copy of the static line diagram by overlaying detected equipment tags and visual indicators on top of the original diagram image. This copying approach allows the system to preserve the simplicity of the original static diagram while adding interactive capabilities through the overlay layer, enabling users to click on equipment tags to access additional information without fundamentally changing the underlying diagram structure.
Solution Approach 2:
The patent transitions from a two-dimensional static image to a multi-dimensional interactive display by adding layers of interactivity. The system detects equipment tags in the original diagram, overlays them with visual indicators, and creates clickable interactive elements that provide access to additional data dimensions such as equipment specifications, operational status, and related information, thereby expanding the diagram from a flat image to an interactive information portal.
2Loss of information
If AI equipment detection and text extraction functions are added, then data accessibility is improved, but device complexity increases
Solution Approach 1:
The patent implements self-service functionality by enabling the system to automatically detect equipment tags, extract text, and generate interactive overlays without requiring manual annotation or configuration. The AI-powered equipment detection function autonomously identifies and locates equipment tags within the line diagram, extracts relevant text information, and creates the interactive display elements, thereby reducing the need for manual intervention and minimizing the complexity burden of adding these advanced features.
3Ease of operation
If interactive buttons and visual indications are implemented, then user experience is enhanced, but manufacturing complexity increases
Solution Approach 1:
The patent creates interactive buttons and visual indications as overlays on top of the original static diagram rather than modifying the diagram itself. This copying strategy allows the system to generate interactive elements programmatically by detecting equipment tags and creating corresponding clickable elements with visual indicators, thereby enhancing user experience while avoiding the complexity of fundamentally redesigning or remanufacturing the entire diagram system.
Data Source
AI summary
A line diagram conversion platform operates to: facilitate generation of a graphical user interface to interact with a user of a client device; import, via a network interface, single line diagram image data associated with an electrical wiring diagram; generate, via an artificial intelligence equipment detection function and based on the single line diagram image data, equipment type and location data associated with one or more pieces of equipment detected in the single line diagram image data; generate equipment tag text and location data associated with one or more equipment tags detected in the single line diagram image data; generate, based on the equipment tag text and location data and the equipment type and location data, interactive single line diagram display data having one or more interactive equipment tags associated with the one or more equipment tags detected in the single line diagram image data and further having visual equipment indications associated with the one or more pieces of equipment detected in the single line diagram image data; and send, via the network interface, the interactive single line diagram display data to the client device for display and interaction via the graphical user interface.


