Multi-Blockchain Node Data Processing via Network Identifier
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Solution Overview
Problem
Conventional multi-blockchain network designs limit a participant node to accessing only one blockchain network at a time, leading to complex operation and maintenance processes, reduced system stability, and increased costs due to the need for multiple node configurations and separate machine setups for different blockchain networks.
Innovation Solution
A multi-blockchain network data processing method and apparatus that utilize a network identifier to enable a single node to simultaneously process data from multiple blockchain networks by isolating communication, storage, and processing requests, allowing a multi-network node to link and process data across multiple blockchain networks efficiently.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a participant node deploys multiple nodes to access multiple blockchain networks, then the node can link multiple blockchain networks, but the system complexity and operation maintenance difficulty increase
Solution Approach 1:
The patent merges multiple blockchain network access capabilities into a single node by introducing a network identifier mechanism. The node can simultaneously process data from multiple blockchain networks by identifying and isolating data based on network identifiers, eliminating the need to deploy separate nodes for each blockchain network while reducing system complexity and operation maintenance difficulty.
Solution Approach 2:
The patent makes a single node universal by enabling it to access and process data from multiple different blockchain networks. The node is designed with multi-functionality to handle various blockchain network protocols and data formats simultaneously through network identifier-based routing, allowing one node to perform the functions previously requiring multiple specialized nodes.
2Adaptability or versatility
If a participant node switches between different blockchain networks, then the node can access different networks, but the interaction process becomes complex and system stability decreases
Solution Approach 1:
The patent segments the data processing function by introducing network identifiers that uniquely identify different blockchain networks. Each data packet is tagged with its originating network identifier, allowing the node to segment and route data to appropriate processing channels simultaneously. This eliminates the need to switch between networks and maintains system stability by processing multiple network data in parallel without interference.
3Productivity
If different machine configurations are used for different blockchain networks, then each network can be optimized, but operation and maintenance costs increase
Solution Approach 1:
The patent creates a universal node configuration that can handle multiple blockchain networks simultaneously through network identifier-based routing. Instead of requiring different machine configurations for each blockchain network, a single standardized node can process data from multiple networks by identifying and isolating data based on network identifiers, significantly reducing operation and maintenance costs while maintaining optimized data processing capabilities.
Data Source
AI summary
A data processing request is obtained containing blockchain data and an identifier used to identify a blockchain network to which the data processing request belongs. The identifier is extracted from the data processing request. Based on the identifier, corresponding processing logic associated with the data processing request is executed. The blockchain data is stored to a blockchain storage area corresponding to the identifier.


