Dynamic Quarantine Engine for Network Resource Validation

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Solution Overview

Problem

Existing systems are inadequate in identifying and validating network resource components across a distributed network, leading to security vulnerabilities and compatibility issues due to disparate updates and lack of network-wide preventative controls.

Innovation Solution

A computerized system for dynamic network security that tracks and analyzes network resource components, constructs a dynamic validated library, and integrates a quarantine engine to perform real-time security validation and vulnerability analysis, ensuring only validated resources are deployed across the network.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Reliability

If conventional systems are used to manage network resources across distributed networks, then device complexity is reduced, but network security and resource validation capability deteriorate

Engineering Contradiction:
Improvenetwork securityVSAvoidsystem complexity
Core Design Contradiction:
ReliabilityVSDevice complexity

Solution Approach 1:

The patent introduces a centralized network resource validation system that acts as an intermediary between distributed network devices and resources. This validation system maintains a database of approved resources and communicates validation rules to network devices, enabling security enforcement without requiring complex local validation logic at each device. The intermediary system handles the complexity of resource validation centrally while keeping individual devices relatively simple.

Inventive Principle:
Principle #24Intermediary (Mediator)

Solution Approach 2:

The system performs preliminary validation of network resources before they are deployed or accessed. Resources are pre-validated against security policies and stored in a validated resource database. When resources need to be accessed or updated, the system checks against this pre-established validation state rather than performing complex real-time analysis, thereby improving security without proportionally increasing operational complexity.

Inventive Principle:
Principle #10Preliminary action

2Reliability

If real-time validation and tracking of network resources is implemented, then network security is improved, but processing time and system complexity increase

Engineering Contradiction:
Improveresource validationVSAvoidvalidation time
Core Design Contradiction:
ReliabilityVSLoss of time

Solution Approach 1:

The validation system implements local quality by caching validation results and resource metadata at distributed network devices. Instead of performing full validation checks for every resource access, devices store locally relevant validation information and only query the central validation system when changes are detected or cached information expires. This reduces validation time for routine operations while maintaining security.

Inventive Principle:
Principle #3Local quality

Solution Approach 2:

The system performs periodic validation checks at predetermined intervals rather than continuously monitoring all resources. Network devices and the central validation system exchange validation updates at scheduled times, allowing the system to maintain security validation without requiring constant real-time processing. This periodic approach reduces processing time and resource consumption while still providing timely security enforcement.

Inventive Principle:
Principle #19Periodic action

Data Source

PatentUS20240380765A1Dynamic quarantine engine integration with a validated network resource component library for network security
Publication Date: 2024.11.14 BANK OF AMERICA CORP
  • US20240380765A1 patent drawing
  • US20240380765A1 patent drawing
  • US20240380765A1 patent drawing

AI summary

Embodiments of the present invention relate to apparatuses, systems, methods and computer program products for a dynamic quarantine engine integration with a validated network resource component library for network security. Specifically, the system typically is structured for real time deconstruction of incoming data and dynamic analysis of deconstructed components, and preventing unsuccessfully validated network resource components in a distributed network. In some aspects, in response to a successful first dynamic deconstructed validation of the first network program resource component, the system constructs a first categorical network program resource component record associated with the first network component at network resource structure database. The system then typically initiates a second dynamic deconstructed validation of the first categorical network program resource component record associated with the first network component.