Data Management System with Injectable Tracking Attributes
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Solution Overview
Problem
Current data communication systems face challenges in efficiently processing and routing data payloads with security ranking indices and tracking attributes across networks, which affects cybersecurity and data integrity.
Innovation Solution
The system electronically processes data payloads with originating node attributes, security ranking indices, and injectable tracking attributes to determine destination network locations, creating a virtual network mesh for secure data transmission and storage, while using dynamic data filter switches to detect and mitigate security risks.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If data payloads are routed through multiple network nodes with security ranking indices, then cybersecurity is improved, but device complexity increases
Solution Approach 1:
The patent segments the network into multiple nodes, each evaluating data payloads independently using security ranking indices. This segmentation allows distributed security evaluation without centralizing complexity, as each node operates autonomously to assess and route data based on its local security criteria.
Solution Approach 2:
The patent introduces an intermediary tracking attribute that mediates between data transmission and security evaluation. This tracking attribute carries security information through the network nodes, allowing complex security routing decisions to be made based on standardized intermediary data rather than requiring complex direct node-to-node security protocols.
2Reliability
If injectable tracking attributes are processed into data payloads, then data integrity is improved, but manufacturing precision requirements increase
Solution Approach 1:
The patent applies preliminary action by pre-defining standardized tracking attribute formats and injection protocols before data transmission begins. This preparation ensures that tracking attributes can be consistently processed across different nodes without requiring high-precision real-time manufacturing adjustments, as the framework is established in advance.
Solution Approach 2:
The patent uses parameter changes by transforming tracking attributes into standardized digital formats that can be reliably processed. By converting physical data handling into digital parameter transformations, the system maintains data integrity through consistent parameter manipulation rather than requiring precise physical manufacturing operations.
3Adaptability or versatility
If a virtual network mesh is created for data storage, then adaptability is improved, but device complexity increases
Solution Approach 1:
The patent applies universality by designing the virtual network mesh to serve multiple functions simultaneously: data storage, security evaluation, and routing. Each node in the mesh can perform these diverse functions, reducing the need for separate specialized systems and thereby limiting the increase in overall device complexity while enhancing adaptability.
Solution Approach 2:
The patent introduces another dimension by creating a virtual network mesh that operates alongside the physical network infrastructure. This virtual layer provides adaptability and flexibility for data routing and storage without requiring changes to the physical device architecture, thus improving adaptability while minimizing increases in physical device complexity.
Data Source
AI summary
Aspects of the present disclosure are generally directed to electronic computer implemented methods of data communication. Steps include receiving a data payload including an originating node attribute, a security ranking index attribute and at least one data element associated with a computer readable record. In another step, a method includes electronically sampling the data payload including the at least one data element and determining a value of the security ranking index attribute; In yet another step, a method includes electronically processing an injectable tracking attribute into the data payload. In a further step, a method includes electronically routing the digital record data payload including the originating node attribute, the injectable tracking attribute and the at least one data element associated.


