Blockchain Digital Ticket Transfer Across Platforms
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Solution Overview
Problem
Existing digital ticket systems restrict the use of digital tickets to a single electronic trading platform, preventing their transfer and utilization across multiple platforms, which limits consumer flexibility and increases security risks due to lack of authentication and verification processes.
Innovation Solution
A blockchain-based system that allows digital tickets to be transferred from one electronic trading platform to another by authenticating client devices and verifying target servers, ensuring secure and traceable transactions through blockchain networks, utilizing cryptographic methods and consensus protocols.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If digital tickets are restricted to a single electronic trading platform, then platform security and control are maintained, but consumer flexibility and cross-platform usability are limited
Solution Approach 1:
The patent introduces a blockchain network as an intermediary layer between different electronic trading platforms. The blockchain serves as a trusted intermediary that enables digital tickets to be transferred and recognized across platforms without requiring direct trust between platforms themselves. This resolves the contradiction by providing cross-platform usability while maintaining security through the blockchain's verification mechanism.
Solution Approach 2:
The digital ticket system is designed with universality by enabling tickets to be used across multiple electronic trading platforms rather than being platform-specific. The blockchain-based transfer mechanism allows a single digital ticket to serve multiple purposes and platforms, enhancing consumer flexibility while maintaining security through standardized verification protocols.
2Adaptability or versatility
If digital tickets can be transferred across multiple platforms, then consumer flexibility is enhanced, but security risks increase due to lack of authentication and verification
Solution Approach 1:
The blockchain network provides continuous feedback mechanisms for authentication and verification during digital ticket transfers. Each transfer transaction is verified by the blockchain, providing real-time feedback on the validity and authenticity of the ticket. This feedback loop prevents security risks by ensuring that only valid, uncompromised tickets can be transferred across platforms.
Solution Approach 2:
The patent employs disposable security measures such as single-use transfer tokens and time-limited verification codes that are generated during the transfer process. These short-lived security elements prevent replay attacks and ensure that each transfer is unique and不可复制, thereby reducing security risks while enabling cross-platform transfer capability.
3Reliability
If authentication and verification processes are implemented for digital ticket transfers, then data security is improved, but system complexity and processing time increase
Solution Approach 1:
The patent replaces complex mechanical authentication systems with blockchain-based cryptographic verification. Instead of requiring complex multi-factor authentication protocols between platforms, the system uses blockchain's inherent cryptographic verification mechanisms to authenticate and verify digital ticket transfers. This substitution maintains high data security while reducing system complexity by leveraging the blockchain's built-in security features.
Solution Approach 2:
The system changes the verification parameters from platform-specific complex validation rules to standardized blockchain verification parameters. By transforming the verification process into blockchain parameter validation (such as checking transaction hashes and confirming token validity), the system achieves high security with reduced complexity, as blockchain's verification parameters are already optimized for security and efficiency.
Data Source
AI summary
Disclosed herein are methods, systems, and apparatus, including computer programs encoded on computer storage media, for blockchain network digital ticket transfer. One of the methods includes receiving a request from a client device to transfer a digital ticket from a blockchain network to a target server by a blockchain network node. The blockchain network node determines whether the client device is authorized to transfer the digital ticket based on a digital signature in the request, and transmits a notification message to the target server if the digital signature is valid. The blockchain network node receives a confirmation message from the target server indicating validity of the client device, and transfers the digital ticket to the target server.


