Biometric Login Authentication With Dynamic Key Code Verification
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Solution Overview
Problem
Existing electronic information authentication systems face challenges such as reliance on single authentication methods that are easily cracked, increased complexity with multi-level security, and lack of automatic variable adjustment, leading to insufficient security and cumbersome manual intervention.
Innovation Solution
A system utilizing body characteristics, variable key codes, and multi-module authentication including a disclosure module, identification module, and telecommunications verification module, with dynamic updates and big data analysis for enhanced security and credibility.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional authentication methods are used, then the system is simple to operate, but the security and credibility of electronic information is insufficient
Solution Approach 1:
The authentication mechanism is divided into multiple independent modules: body characteristic measurement module, variable key code module, big data analysis module, and AI calculation module. Each module performs a specific authentication function, allowing the system to achieve high security through segmented functionality while maintaining manageable complexity through modular architecture.
Solution Approach 2:
The patent combines multiple authentication technologies (body characteristic measurement, variable key codes, big data analysis, and AI calculation) to create a composite authentication system. This composite approach leverages the strengths of each individual technology while achieving superior overall security and credibility compared to any single method.
2Reliability
If multi-level authentication is implemented, then the security is enhanced, but the operation becomes cumbersome with manual intervention
Solution Approach 1:
The system performs automatic authentication through body characteristic measurement and variable key code generation without requiring manual intervention. The big data analysis and AI calculation modules automatically verify identities and update authentication status, enabling the system to serve itself and eliminating cumbersome manual processes while maintaining high security.
Solution Approach 2:
The system continuously monitors authentication status and automatically updates variable key codes based on real-time feedback from body characteristic measurements. This feedback mechanism enables dynamic adjustment of authentication parameters without manual intervention, maintaining security while simplifying operation through automated responses to changing conditions.
3Reliability
If static authentication codes are used, then the system is simple to implement, but the security is insufficient against cracking
Solution Approach 1:
The patent implements dynamic variable key codes that automatically change based on real-time body characteristic measurements and authentication status. This dynamic approach prevents security cracking by ensuring that authentication codes are never static or predictable, while the automated update mechanism manages the complexity of continuous code generation and rotation.
Solution Approach 2:
The system continuously changes authentication parameters by updating variable key codes based on measured body characteristics and authentication history. This parameter change mechanism ensures that authentication credentials are constantly evolving, making them resistant to cracking, while automated parameter management keeps the system complexity at acceptable levels.
4Reliability
If continuous verification is performed, then the identity validity is maintained, but the processing time increases
Solution Approach 1:
The system performs identity verification at regular intervals rather than continuously, using periodic body characteristic measurements to update authentication status. This periodic action maintains identity validity by ensuring credentials are current, while the spaced-out verification timing reduces processing time compared to continuous monitoring and verification.
Solution Approach 2:
The system maintains continuous authentication readiness through automated variable key code updates and real-time body characteristic measurement, ensuring identity validity is continuously maintained without requiring continuous verification actions. This continuity of useful action (automated updates) distinguishes it from continuous verification (constant checking), achieving both validity maintenance and time efficiency.
Data Source
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AI summary
To address the issue of electronic information trustworthiness, this invention provides an electronic information recognition system and its method. The system includes at least one electronic device connected to the platform's server host to capture physical characteristics. When a customer attempts to log into the platform, the device retrieves at least one type of first physical characteristic from the user. updated automatically or passively. After logging into the platform, the system can selectively capture a second physical characteristic from the user at regular intervals to maintain the login session. The first characteristic may be the same as or different from the second characteristic. The platform includes at least one module connected to each other to interactively process customer information on the network.