Cyber Resilience Token Valuation for Adaptive Threat Response
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Solution Overview
Problem
Existing cybersecurity systems lack integrated incident response capabilities, operate in isolation, and fail to adapt to evolving threats, leading to delayed responses, fragmented visibility, and increased exposure to cyber threats due to static defenses.
Innovation Solution
A customized cybersecurity framework that models cyber resilience data using identities and metadata, integrating threat detection, response, and recovery, and utilizing decentralized ledgers for secure data exchange and tokenization to provide real-time monitoring and adaptive protection.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If cybersecurity systems operate in isolation with static defenses, then system simplicity is maintained, but response effectiveness and adaptability to evolving threats deteriorate
Solution Approach 1:
The patent merges threat detection, response, and recovery capabilities into a single integrated cybersecurity system. The system combines multiple functional components (detection module, response module, recovery module) that operate together rather than in isolation, enabling coordinated action against evolving threats while maintaining manageable complexity through unified architecture.
Solution Approach 2:
The system transitions from static defenses to dynamic, adaptive security measures. The cybersecurity system continuously updates its detection and response mechanisms based on evolving threat patterns, enabling it to adapt to new attack vectors and methodologies while maintaining operational effectiveness.
2Reliability
If comprehensive incident response capabilities are integrated, then response effectiveness improves, but system complexity and implementation cost increase
Solution Approach 1:
The incident response system is divided into distinct functional modules: detection module, response module, and recovery module. Each module handles specific aspects of incident management independently, allowing for specialized functionality while maintaining overall system manageability through modular architecture.
Solution Approach 2:
The integrated cybersecurity system provides multi-functional capabilities within a single platform, handling threat detection, incident response, and system recovery operations. This universal approach consolidates multiple security functions into one system, improving response effectiveness while reducing the need for separate specialized systems.
3Reliability
If real-time monitoring and adaptive protection are implemented, then security posture improves, but computational resources and processing requirements increase
Solution Approach 1:
The system implements continuous monitoring and real-time analysis of cyber threats, maintaining constant surveillance of network activities and security postures. This continuous action enables timely detection and response to emerging threats, improving security posture through uninterrupted monitoring operations.
Data Source
AI summary
A method can include determining, by one or more processing circuits, a cybersecurity resilience posture of an entity. The method can include identifying or generating, by the one or more processing circuits, at least one token comprising a proof or a posture state corresponding with the cybersecurity resilience posture of the entity. The method can include determining, by the one or more processing circuits using a cyber threat intelligence (CTI) model, at least one of a quantitative value or a qualitative value corresponding to the at least one token. The method can include updating, by the one or more processing circuits, a cybersecurity profile of the entity corresponding to at least one protection product.


