Drag-and-Drop Entity Mapping for Cybersecurity Data Intake
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Solution Overview
Problem
Existing cybersecurity systems face challenges such as lack of integrated incident response capabilities, complex procurement processes for third-party vendors, inability to dynamically adapt to changing threats, and inadequate visibility into organizational readiness and vulnerabilities.
Innovation Solution
A customized cybersecurity framework that integrates threat detection, response, and recovery, streamlines vendor engagement, and dynamically adapts to security landscape changes by providing tailored protection plans and real-time monitoring.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional cybersecurity systems are used, then basic security functions are provided, but integrated incident response capabilities are lacking
Solution Approach 1:
The patent combines multiple cybersecurity functions (threat detection, incident response, vendor management, and protection plan coordination) into a single integrated platform. This merging of previously separate systems enables comprehensive incident response capabilities while managing complexity through unified architecture.
Solution Approach 2:
The cybersecurity protection system is designed as a multi-functional platform that can perform threat detection, incident response coordination, vendor management, and protection plan activation simultaneously. This universal system addresses multiple security needs through a single integrated solution.
2Difficulty of detecting and measuring
If comprehensive security monitoring is implemented, then threat detection capability is improved, but system complexity increases
Solution Approach 1:
The monitoring system is segmented into specialized modules: vulnerability assessment components, threat detection engines, incident response coordination systems, and vendor management interfaces. Each segment handles specific detection tasks, improving overall threat detection capability while managing complexity through modular design.
Solution Approach 2:
The patent introduces intermediary systems that coordinate between different monitoring components and external vendors. These intermediaries manage the complexity of comprehensive monitoring by providing standardized interfaces and automation for threat information exchange and response coordination.
3Adaptability or versatility
If dynamic adaptation to threats is implemented, then security responsiveness is improved, but system complexity increases
Solution Approach 1:
The cybersecurity protection system implements dynamic adaptation through automated mechanisms that adjust protection parameters based on real-time threat intelligence. The system can dynamically activate different protection plans, modify security configurations, and coordinate incident response actions without manual intervention, enabling rapid adaptation to evolving threats.
Solution Approach 2:
The patent incorporates feedback loops where threat detection results automatically trigger incident response actions and protection plan adjustments. The system continuously monitors threat landscapes, learns from detected incidents, and adapts its defense strategies accordingly, creating a responsive security ecosystem that evolves with emerging threats.
4Speed
If manual vendor procurement processes are used, then vendor selection flexibility is maintained, but response time increases
Solution Approach 1:
The patent implements preliminary actions by pre-vetting and onboarding cybersecurity vendors in advance through the integrated platform. Vendor capabilities, credentials, and service offerings are pre-assessed and stored in the system, enabling rapid deployment when incidents occur without requiring manual procurement processes during critical response periods.
Solution Approach 2:
The system enables self-service vendor engagement through automated matching of incident requirements with appropriate pre-qualified vendors. The platform automatically coordinates vendor activation, resource allocation, and service deployment based on incident characteristics, reducing manual procurement overhead while maintaining vendor selection quality.
Data Source
AI summary
Systems, methods, and computer-readable storage media. One system includes one or more processing circuits configured to receive, via an application or communication interface using an interactive input feature, a portion of entity data from a user device. The one or more processing circuits generate at least one digital representation by extracting content of the portion of the entity data, and the extracted content of the portion of the entity data corresponds to at least one of a security posture, risk assessment, or compliance status. The one or more processing circuits populate, from the at least one digital representation, at least one field of a data object based on the extracted content of the portion of the entity data stored in the at least one digital representation.


