Blockchain Resource File Processing via Supervision Nodes
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Solution Overview
Problem
Existing resource file processing systems face inefficiencies and security concerns due to centralized processing modes, leading to low efficiency and unbalanced load distribution, as well as lack of effective supervision over ownership files.
Innovation Solution
A resource file processing system and method based on a blockchain structure, utilizing separate supervision and member nodes to audit and register resource files, enabling secure and efficient management of real physical resources through data communication and encrypted transactions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If centralized processing mode is used, then resource file processing can be simplified, but processing efficiency is low and load distribution is unbalanced
Solution Approach 1:
The system segments the centralized processing function into distributed nodes (supervision nodes and member nodes) connected via blockchain. Each node independently processes resource file registration requests, dividing the workload across multiple participants rather than concentrating it in a single server, thereby improving processing efficiency and load distribution.
Solution Approach 2:
The system transitions from a single-dimensional centralized architecture to a multi-dimensional distributed blockchain network. By adding the dimension of decentralization with multiple supervision nodes and member nodes operating in parallel, the system achieves better load distribution and processing capacity while maintaining structured organization through blockchain layers.
2Reliability
If centralized processing mode is used, then system structure is simple, but security is low due to lack of effective supervision
Solution Approach 1:
The system separates supervision functions from member functions, creating distinct supervision nodes that independently verify and audit resource file registrations. This segmentation of roles enables effective supervision and security verification without requiring a complex hierarchical structure, as the blockchain protocol itself enforces the separation and verification mechanisms.
Solution Approach 2:
The blockchain structure acts as an intermediary layer between member nodes submitting resource files and the supervision nodes verifying them. This intermediary mechanism provides automated, transparent, and tamper-proof verification, enhancing security while maintaining system simplicity through protocol-level enforcement rather than complex procedural controls.
3Productivity
If manual or automatic processing of target resource files is performed, then processing can be completed, but efficiency is low and cost is high
Solution Approach 1:
Member nodes autonomously construct and submit resource file registration requests to supervision nodes without requiring manual intervention. The supervision nodes automatically verify and register the files according to predefined blockchain protocols, eliminating manual processing steps and significantly reducing both processing time and operational costs.
Solution Approach 2:
The system performs preliminary verification and validation of resource files at the point of submission by supervision nodes before files enter the main processing queue. This preliminary action prevents invalid files from consuming processing resources, improving overall processing efficiency and reducing time loss through early error detection and rejection.
Data Source
AI summary
The present invention provides a resource file processing method based on a blockchain structure. The method includes a member node in a blockchain including at least one supervision node and at least one member node constructs a resource file registration request according to a user instruction, and sends the resource file registration request to one of the at least one supervision node. According to the resource file registration request from any member node, the at least one supervision node audits and registers a resource file indicated by the resource file registration request, and transmits the registration result back to the member node initiating the resource file registration request. The at least one member node performs an operation on a real physical resource associated with the registered resource file by performing data communication with another member node.
