Dynamic Network Application Analysis for Proactive Resiliency
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Solution Overview
Problem
Conventional systems lack the ability to provide proactive resiliency, redundancy, and security remediation across a network based on dynamic analysis of technology applications, leading to undesirable failed processes and delayed processing due to shifts in production environments and incompatible data transmissions.
Innovation Solution
A system configured for dynamic and continuous processing of network activity data to proactively identify network redundancy and vulnerabilities, triggering remediation actions before failures occur, utilizing a control system with processing devices to capture and analyze data flows, determine network ownership components, and execute remediation actions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If conventional systems process data using static architectures without dynamic analysis, then system simplicity is maintained, but network resiliency and security deteriorate due to inability to proactively identify and mitigate failures
Solution Approach 1:
The system performs preliminary analysis of data flows, application behaviors, and network patterns to identify potential failures before they occur. By proactively detecting vulnerabilities and anomalies in advance, the system can trigger remediation actions preemptively, enhancing network resiliency without requiring complex reactive mechanisms.
Solution Approach 2:
The system continuously monitors network activity, application performance, and data flow patterns, feeding this information back to dynamically adjust security policies, resource allocation, and failure mitigation strategies. This closed-loop feedback mechanism enables adaptive resiliency while maintaining manageable system complexity through automated control.
2Reliability
If systems implement dynamic analysis and proactive remediation mechanisms, then network security and resiliency improve, but processing time and system complexity increase
Solution Approach 1:
Security policies, failure mitigation strategies, and remediation actions are predetermined and prepared in advance based on analyzed patterns and threats. When anomalies are detected, pre-configured remediation actions are triggered immediately, reducing the time required for response while maintaining high security standards.
Solution Approach 2:
The system autonomously performs dynamic analysis, threat detection, and remediation execution without requiring manual intervention. Automated monitoring agents collect data, analyze patterns, and trigger corrective actions independently, minimizing processing delays while ensuring continuous security enforcement.
3Productivity
If conventional systems rely on prior source data without real-time analysis, then data transmission speed is maintained, but data compatibility and process success rate deteriorate due to environmental shifts
Solution Approach 1:
The system dynamically adapts data processing and transmission based on real-time analysis of environmental changes, application states, and data flow patterns. By continuously adjusting processing parameters and validation rules according to current conditions, the system maintains high process success rates while minimizing impact on data transmission speed through selective rather than universal processing.
Data Source
AI summary
Embodiments of the invention are directed to systems, methods, and computer program products for proactive resiliency, redundancy and security remediation across a network based on dynamic analysis of technology applications. The invention involves determining whether an entity communication network comprises at least one first redundant technology application associated with the first technology application such that the at least one first redundant technology application renders at least one processing activity of the first technology application resilient. Here, the invention involves constructing network vulnerability components associated with a first data flow comprising an open vulnerability component, an unauthorized technology component, and an open security component. The invention may determine a prognostic failure associated with the first data flow based on determining that the entity communication network does not comprise at least one first redundant technology application associated with the first technology application.


