Dynamic Network Security Validation System
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Solution Overview
Problem
Existing systems fail to effectively track and validate network resource components across distributed networks, leading to security vulnerabilities and compatibility issues due to the inability to distinguish between secure and unsecured resources, and disparate updates across different devices.
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
Engineering 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
Solution Approach 1:
The patent introduces a centralized network resource validation system that acts as an intermediary between distributed network devices and resources. This central validation server receives resource requests, performs security validation, and returns validation results, thereby improving network security without requiring each distributed device to independently implement complex validation logic.
Solution Approach 2:
The system performs preliminary validation of network resources before they are deployed or accessed across the distributed network. By validating resources in advance and maintaining a validation database, the system ensures security and compatibility are checked beforehand, preventing security issues from arising during actual resource usage.
2Ease of operation
If resources are updated independently at different devices, then ease of operation is improved, but network compatibility and security deteriorate
Solution Approach 1:
The validation system implements feedback mechanisms where validation results from one device are communicated to the central validation database, which then informs other devices about validated resources. This feedback loop ensures that all devices in the distributed network have access to consistent validation information, maintaining compatibility while allowing independent operation.
Solution Approach 2:
The central validation system serves multiple functions: it validates resources for different devices, maintains a centralized database of validation results, provides compatibility checking, and ensures security across the entire network. This universal validation service benefits all devices without requiring device-specific validation implementations.
3Reliability
If comprehensive validation and tracking of all network resources is implemented, then network security is improved, but processing time and system complexity increase
Solution Approach 1:
The system performs validation of network resources in advance before they are deployed or accessed. By pre-validating resources and storing validation results in a centralized database, the system avoids time-consuming validation processes during actual resource usage, thereby reducing processing time while maintaining comprehensive validation coverage.
Solution Approach 2:
The validation system creates and maintains copies of validation results in a centralized database that can be quickly accessed by all devices in the network. Instead of performing full validation processes repeatedly, devices retrieve pre-computed validation information from the database, significantly reducing processing time while maintaining validation accuracy.
Data Source
AI summary
Embodiments of the present invention relate to apparatuses, systems, methods and computer program products for security analysis and validation during construction and deployment of dynamic network components. Specifically, the system is typically structured for identifying and remediating defects in a first resource program code being built at an internal network layer of the first distributed network, in real-time, and validating the first resource program code at both a lower deployment environment and a higher deployment environment. In some aspects, the system, in response to the successful first validation of the first resource program code, stores the first resource program code at an artifactory system. In response to a successful second validation, the system then typically allows deployment of the first resource program code to the lower deployment environment. In response to a successful third validation, the system may initiate deployment of the first resource program code to the higher deployment environment.


