Tiling Display Screen Segmentation and Synchronization
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Solution Overview
Problem
Existing display technologies face challenges in achieving efficient tiled display across multiple screens, lacking a systematic approach to segment multimedia resources and synchronize screen parameters for coordinated display.
Innovation Solution
A terminal control method and system that generates an orchestration plan based on user-selected programs, segments multimedia resources according to selected tiling screens, performs super-resolution processing, and adjusts screen display parameters, while determining location distribution using Bluetooth beacons to ensure synchronized and high-quality tiled displays.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Area of stationary object
If multiple display screens are tiled together for display, then the display area is expanded, but the synchronization and coordination of screen parameters becomes complex
Solution Approach 1:
The system segments the display area into multiple independent tiling screens, each capable of displaying different content. The orchestration plan divides the overall display task into screen-specific segments, allowing independent control while maintaining coordinated presentation across all screens.
Solution Approach 2:
The system implements feedback mechanisms where each tiling screen reports its working state information (running time, heartbeat information, abnormal log) to the control end. This feedback loop enables real-time monitoring and adjustment of screen parameters to maintain synchronization and coordination across the tiled display system.
2Area of stationary object
If multimedia resources are distributed to multiple tiling screens, then the display coverage is improved, but the resource segmentation and allocation becomes complex
Solution Approach 1:
The system segments multimedia resources according to the selected tiling screens and the orchestration plan, dividing content into appropriate portions for each screen. This segmentation process automatically handles resource allocation based on screen configuration and content requirements.
Solution Approach 2:
The system performs preliminary actions by pre-processing multimedia resources (such as super-resolution processing) before distribution to tiling screens. The orchestration plan is generated in advance, preparing the resource allocation strategy before actual distribution occurs.
3Manufacturing precision
If screen display parameters are adjusted for each tiling screen, then the display quality is improved, but the control complexity increases
Solution Approach 1:
The control end serves multiple functions: it generates orchestration plans, segments multimedia resources, monitors working state information, and adjusts screen display parameters. This universal control mechanism simplifies operation by consolidating multiple control functions into a single system that manages all tiling screens uniformly.
Solution Approach 2:
The system adjusts screen display parameters based on feedback from working state information reported by each tiling screen. This feedback-driven adjustment process automates the optimization of display quality while reducing manual control complexity.
4Measurement precision
If location distribution of tiling screens is determined using Bluetooth beacons, then the spatial arrangement accuracy is improved, but the system complexity increases
Solution Approach 1:
Bluetooth beacons serve as intermediary devices that facilitate location determination without requiring direct complex communication between all tiling screens. The beacons act as mediators that provide spatial reference information, simplifying the overall system architecture while maintaining high measurement precision.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Enables efficient and high-quality tiled display across multiple screens by segmenting multimedia resources, adjusting screen parameters, and determining location distribution, thereby improving display management and user experience.
Implementation Method 1
determining RSSI values of three Bluetooth beacons at different locations received by each tiling screen
Data Source
AI summary
The present disclosure provides a terminal control method, apparatus, and system. The control method includes: generating an orchestration plan according to a program selected by a user; selecting, according to the program and the orchestration plan, from tiling screens that form a terminal, multiple tiling screens used for displaying the program; segmenting, according to the selected multiple tiling screens, a multimedia resource corresponding to the program to obtain segmented multimedia resources; and sending said multimedia resources to the multiple tiling screens, so that each tiling screen displays according to the corresponding multimedia resource and the orchestration plan.


