Adaptive Network Topology Management for VR Data Exchange
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Conventional fixed network topologies are inefficient for realistic data exchange environments, particularly in 3D virtual reality applications, as they fail to adapt to varying data types and service requirements, leading to suboptimal data transmission and processing.
Innovation Solution
A method and system that dynamically modify network topology based on service type and server status information, using a management server to acquire and transmit network configuration information to client terminals, allowing them to configure optimal network channels for efficient data transmission and processing.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If a fixed network topology is used, then the network structure is simple and stable, but the efficiency of realistic data exchange deteriorates
Solution Approach 1:
The patent implements dynamic network topology modification by allowing the network structure to change adaptively based on service requirements. The system modifies network topology dynamically to match different service types (e.g., P2P for messaging, C/S for screen rendering), thereby improving data exchange efficiency without requiring manual reconfiguration.
Solution Approach 2:
The system changes network configuration parameters (topology structure, channel allocation) based on service type and data characteristics. By adjusting these parameters dynamically, the network can optimize performance for different realistic data exchange scenarios while maintaining manageable complexity through automated management.
2Adaptability or versatility
If a P2P server is used for low-capacity messages, then messaging efficiency is improved, but it becomes unsuitable for large-capacity screen rendering data
Solution Approach 1:
The patent creates a universal network management system that can handle multiple service types through a single adaptive framework. The system automatically selects and configures appropriate network topologies for different services (messaging, screen rendering, file transfer), making the network infrastructure versatile while maintaining high efficiency for each specific service type.
3Productivity
If network topology is modified adaptively, then data transmission efficiency is improved, but the complexity of network management increases
Solution Approach 1:
The patent implements self-service network management where the system automatically monitors service requirements, selects appropriate topologies, and reconfigures the network without manual intervention. This automation reduces the perceived management complexity while maintaining adaptive optimization for high-efficiency realistic data transmission.
Solution Approach 2:
The system employs feedback mechanisms to continuously monitor service performance and dynamically adjust network topology accordingly. This closed-loop control enables automatic adaptation to changing requirements, improving transmission efficiency while keeping management complexity manageable through rule-based decision making.
Data Source
AI summary
In accordance with an aspect, there is provided a method for supporting provision of service so that a client terminal is provided with desired service by adaptively modifying a network topology depending on service properties, including (a) when service type information indicating a type of desired service is acquired from the client terminal, and status information indicating status of one or more service provision servers is acquired, acquiring, by a management server, network configuration information as information corresponding to the service type information and the status information with reference to a DB, wherein the network configuration information is required by the client terminal to be provided with the service from a specific service provision server; and (b) transmitting, by the management server, acquired network configuration information to the client terminal, thus supporting network configuration such that the client terminal configures a network based on the network configuration information.


