Grid Layout Adaptation for Multi-Platform Mobile Content
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Solution Overview
Problem
Content providers face challenges in designing and maintaining multiple applications for different mobile devices with unique specifications, leading to time-consuming and arduous processes for delivering media content effectively across various platforms.
Innovation Solution
A system that calculates a grid layout for magazine editions based on screen size, allowing content to be displayed in a format specified by the publisher, regardless of the mobile device's operating platform, using a grid calculator, tile selector, and content arranger to optimize article content within tiles for display on mobile devices with varying specifications.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If content providers develop multiple applications for different mobile devices, then content can reach more users across various platforms, but the design and maintenance process becomes time-consuming and arduous
Solution Approach 1:
The patent implements a universal publishing system that can publish content to multiple mobile device platforms through a single application interface. The system uses a standardized grid-based layout that automatically adapts to different screen sizes and operating systems, eliminating the need to develop and maintain separate applications for each platform while maintaining broad content accessibility
Solution Approach 2:
The system dynamically adjusts layout parameters such as grid cell dimensions, tile sizes, and content positioning based on the target device's screen characteristics. By parameterizing the layout system to respond to device specifications rather than creating platform-specific applications, the system achieves multi-platform compatibility while streamlining the publishing workflow
2Reliability
If content providers tailor each application to fit processing requirements of particular mobile devices, then content delivery is optimized, but the complexity of development and maintenance increases
Solution Approach 1:
The patent divides the content layout into discrete grid segments that can be independently configured and assigned to different articles. This segmentation allows the system to optimize content delivery for specific device characteristics while maintaining a unified application structure, reducing development complexity by avoiding the need to create entirely separate applications for different device types
Solution Approach 2:
The system employs dynamic layout adjustment where grid parameters, tile configurations, and content arrangements are automatically modified based on the target device's processing requirements and screen characteristics. This dynamic adaptation within a single application framework achieves device-optimized content delivery without the complexity of maintaining multiple tailored applications
3Adaptability or versatility
If a grid layout system is implemented to adapt content to different screen sizes, then publisher control over layout is maintained, but the system complexity increases
Solution Approach 1:
The layout system divides the screen into a grid of standardized segments, with each segment representing a configurable unit for content placement. This segmentation provides publisher control over layout arrangements while simplifying the adaptation process, as the same grid framework can be applied across different screen sizes without requiring complex custom layouts for each device
Solution Approach 2:
The patent introduces a grid dimension as an intermediate layer between content and display, allowing publishers to control layout in terms of grid units rather than absolute pixel dimensions. This dimensional abstraction enables automatic scaling and adaptation to different screen sizes while maintaining publisher intent, reducing the complexity of direct screen-size-specific layout management
Data Source
AI summary
A system, computer-implemented method and computer-readable medium for displaying content are provided. In an embodiment, content for display within a tiled interface and a screen size for display of the tiled interface are determined. Grid segments of the tiled interface are determined based on the content and the screen size. The grid segments are grouped into tiles of the tiled interface based on a relative importance of the articles. The content is displayed on the tiled interface within the tiles of the tiled interface.


