Associative Clustered Tiling for Data Interconnectivity
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Solution Overview
Problem
Traditional electronic data presentation methods fail to effectively convey the interconnectivity between data items, leading to a lack of understanding of relationships within complex information sets, as they adhere to linearized formats despite the absence of physical constraints in electronic media.
Innovation Solution
A system and method utilizing associative clustered tiling and tessellation to dynamically organize and display data in a spatially dimensioned format, where closely related data items are positioned closely together, allowing for intuitive navigation and exploration of data relationships on electronic user interfaces, particularly on mobile devices.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If linearized presentation format is used, then device complexity is reduced and ease of manufacture is improved, but the sense of interconnectivity between data items is lost and data comprehension deteriorates
Solution Approach 1:
The patent transitions from traditional linear one-dimensional data presentation to a two-dimensional spatial grid layout. Data items are arranged in a tessellated grid where position encodes relationship strength, adding a spatial dimension to data visualization. This allows multiple data items to be displayed simultaneously with their interconnections visually represented through proximity and spatial arrangement, resolving the contradiction between simplicity and information preservation.
Solution Approach 2:
The grid-based display system serves multiple functions simultaneously: it presents data items, visualizes relationships through spatial proximity, enables intuitive navigation through the data set, and maintains scalability for different screen sizes. The tessellated grid structure universally accommodates various data types and relationship complexities while preserving interconnectivity information, addressing the limitation of linear formats.
2Ease of operation
If spatially dimensioned display format is used, then data comprehension and navigation are improved, but device complexity increases
Solution Approach 1:
The patent segments the display area into a tessellated grid of discrete cells or tiles, where each cell can independently contain a data item. This segmentation simplifies the complexity by breaking down the complex task of displaying relationships into manageable grid units, where spatial proximity naturally encodes relationship strength without requiring complex algorithms or additional hardware.
3Device complexity
If traditional linear presentation is used, then implementation simplicity is maintained, but user exploration and understanding of data relationships are limited
Solution Approach 1:
By adding the spatial dimension through grid positioning, the system enables users to explore data relationships through visual patterns and spatial arrangements. The tessellated grid allows intuitive navigation where users can perceive connections between data items through their relative positions, significantly enhancing data exploration capability while maintaining implementation simplicity through the regular grid structure.
Data Source
AI summary
An exemplary embodiment includes a system for an information visualization engine designed to dynamically organize, via associative clustered tiling and tessellation, and then present instantly addressable content via any electronic user interface, but especially via mobile devices such as touch screen cellular phones, and tablets.


