Server System for Real-Time Moving Image Collection and Delivery
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Solution Overview
Problem
Conventional systems face challenges in managing real-time communication and content delivery for a large number of users, particularly in handling independent moving images and providing effective marketing and copyright management, while also struggling with real-time object recognition and advertising based on user interests.
Innovation Solution
A server system that processes and delivers moving images in real-time, utilizing a mother database with AI capabilities for cognitive processing, enabling real-time image recognition, copyright management, and user-specific marketing through a network of terminals, allowing for adaptive and rapid content delivery and object detection.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If conventional systems handle independent moving images for each user, then user-specific content delivery is achieved, but system complexity and processing overhead increase significantly
Solution Approach 1:
The patent merges multiple independent moving image streams into a single composite moving image that contains information from multiple users. This allows the server to process and deliver one unified stream rather than managing numerous separate streams, thereby reducing system complexity while still enabling user-specific content delivery through selective extraction and recombination of individual user portions.
Solution Approach 2:
The composite moving image serves multiple functions simultaneously: it acts as a unified transmission medium for all users, a structured data container for individual user content, and a basis for generating user-specific personalized moving images. This multi-functionality reduces the need for separate processing systems for each user.
2Speed
If real-time processing is implemented for a large number of users, then real-time communication quality is improved, but processing power and system resources are overwhelmed
Solution Approach 1:
By combining multiple user streams into a single composite moving image, the system reduces the total number of processing operations required. Instead of independently encoding, transmitting, and managing separate streams for each user, the server processes one unified stream, significantly reducing computational power requirements while maintaining real-time communication quality.
Solution Approach 2:
The system performs preliminary organization of user content into the composite moving image structure before final delivery. This pre-processing step structures the data in advance, enabling faster real-time extraction and delivery of user-specific content without requiring intensive processing during the actual communication moment.
3Ease of operation
If marketing information is provided based on user interests, then user engagement is enhanced, but information processing and analysis requirements increase
Solution Approach 1:
The system analyzes user interactions with the composite moving image (such as which user portions are viewed or selected) and uses this feedback information to provide targeted marketing content. This feedback mechanism enables personalized marketing based on actual user behavior rather than requiring complex predictive analysis, reducing processing requirements while enhancing engagement.
4Reliability
If copyright management is performed adaptively, then copyright protection effectiveness is improved, but processing time and computational resources increase
Solution Approach 1:
The system performs preliminary copyright management by embedding copyright information and establishing protection mechanisms during the composite moving image creation phase. This advance preparation allows for rapid copyright verification and enforcement during content delivery without requiring time-consuming analysis at the moment of transmission, thus improving protection effectiveness while minimizing processing time delays.
Data Source
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AI summary
Provided is a server system in which real-time communication based on a moving image group is performed between a number of users. The moving image collection/delivery server system accumulates moving images sequentially uploaded in real time via a network in a database, generates moving image thumbnails used to simultaneously display a plurality of moving images on a single display screen in real time, allocates the moving image thumbnails to a channel group adaptively generated from sequentially uploaded moving images, and delivers the moving image thumbnails to a terminal having a display and operating unit in real time via a network, and the sequentially generated moving image thumbnails are stored in an allocated channel in ascending order of shooting times and delivered to a plurality of terminals.