Dynamic Data Encryption with Segmented Resource Transfer Parameters
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Solution Overview
Problem
In active network sessions involving multiple parties, sensitive information is often divulged unnecessarily, increasing the risk of misappropriation due to the varying requirements of each party involved in the resource transfer process.
Innovation Solution
A dynamic data encryption (DDE) engine generates a unique digital identifier through hashing resource transfer parameters, allowing selective decryption and transmission of specific portions to relevant parties, ensuring secure and efficient execution of resource transfers.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of information
If all resource transfer parameters are transmitted to all parties involved in the network session, then complete information availability is achieved, but information security deteriorates due to unnecessary exposure of sensitive data
Solution Approach 1:
The patent segments the resource transfer parameters into multiple encrypted portions, where each party receives only the specific portion needed for their function. The first portion contains parameters needed by the merchant (e.g., resource identification, quantity), the second portion contains parameters needed by the payment reconciliation entity (e.g., payment details, transaction ID), and the third portion contains parameters needed by the user (e.g., confirmation details). This segmentation ensures that each party has access to complete information for their role without exposing sensitive data to unrelated parties.
2Object-affected harmful factors
If traditional encryption methods are used to protect sensitive information, then information security is improved, but processing efficiency deteriorates due to decryption overhead
Solution Approach 1:
The patent applies preliminary action by pre-encrypting the resource transfer parameters into multiple portions using the DDE engine before transmission. The encryption is performed once at the source, creating distinct encrypted portions that can be independently transmitted and processed. Each party receives pre-encrypted portions specific to their needs, eliminating the need for them to decrypt unrelated data. This preliminary segmentation and encryption approach maintains security while improving processing efficiency, as each party only handles the encrypted portion relevant to their function.
3Manufacturing precision
If complete resource transfer parameters are provided to each party, then execution accuracy is improved, but data transmission volume increases
Solution Approach 1:
The patent applies local quality by providing each party with a customized set of encrypted parameters tailored to their specific needs. The merchant receives the first portion with parameters local to their function (resource details, delivery information), the payment reconciliation entity receives the second portion with parameters local to their function (payment information, transaction verification data), and the user receives the third portion with parameters local to their function (transaction confirmation, account details). This localized parameter distribution ensures each party has the complete information needed for accurate execution of their specific task without receiving unnecessary data that would increase transmission volume.
Data Source
AI summary
Systems, computer program products, and methods are described herein for dynamic data encryption in an active network session. The present invention is configured to initiate an active network session with a user input device; electronically receive, from the user input device, a resource transfer request from a user, wherein the resource transfer request comprises at least one or more resource transfer parameters; trigger a dynamic data encryption (DDE) engine in response to receiving the resource transfer request; generate, using the DDE engine, a digital identifier for the resource transfer request using the one or more resource transfer parameters; execute the resource transfer request using the digital identifier; transmit control signals configured to cause the user input device to display a notification indicating that the resource transfer request has been executed; and terminate the active network session.


