Real-Time Resource Transmission Trigger in Distributed Networks
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Solution Overview
Problem
Existing systems face challenges in accurately and efficiently generating real-time resource transmissions within electronic networks, as they struggle to determine if prior resource transmissions have occurred, both within and outside the network, due to the complexity of gathering and correlating data from various sources.
Innovation Solution
A system that identifies resource advance accounts, determines resource surpluses, and initiates resource transmissions based on triggers, using electronic resource storage accounts, while ensuring no prior transmissions have been generated, by employing a process that includes identifying resource storage accounts, generating resource transmission tokens, and updating indices dynamically.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If data regarding potential resource transmissions is gathered from a variety of networks, data sources, databases, and datastores to determine whether prior resource transmissions have occurred, then the accuracy of resource transmission determination is improved, but the time required to complete the determination and the complexity of the system increase
Solution Approach 1:
The system performs preliminary actions by gathering and correlating data from multiple networks, data sources, databases, and datastores in advance before a resource transmission is initiated. This pre-processing of data ensures that when a resource transmission needs to be determined, the system has already assembled the necessary information, thereby reducing the time required at the moment of decision-making while maintaining high accuracy.
Solution Approach 2:
The system prepares in advance by establishing a comprehensive data gathering framework that cushions against future time constraints. By proactively collecting and correlating data from diverse sources before transmission decisions are needed, the system creates a buffer that prevents time pressure from compromising the accuracy of resource transmission determinations.
2Measurement precision
If data regarding potential resource transmissions is gathered from a variety of networks, data sources, databases, and datastores to determine whether prior resource transmissions have occurred, then the accuracy of resource transmission determination is improved, but the device complexity increases
Solution Approach 1:
The system applies universality by creating a multi-functional data gathering and correlation framework that can handle multiple types of data sources, networks, databases, and datastores through a unified approach. This universal system reduces device complexity by avoiding the need for separate specialized mechanisms for each data source type, while still maintaining the ability to accurately determine prior resource transmissions across diverse environments.
Solution Approach 2:
The system introduces an intermediary layer that mediates between the various data sources and the resource transmission determination process. This intermediary framework simplifies the overall system complexity by providing a standardized interface and processing mechanism that handles the complexity of data gathering and correlation internally, while presenting a simplified interface to the resource transmission decision-making process.
3Productivity
If manual input is reduced and automated processing is implemented for resource transmissions, then productivity is improved, but the initial system setup and configuration complexity increase
Solution Approach 1:
The system implements self-service by enabling automated resource transmission processing that operates independently without requiring manual intervention. The system automatically gathers data, correlates information, determines whether prior transmissions occurred, and executes resource transmissions based on predetermined criteria. This self-service capability dramatically improves productivity by eliminating manual bottlenecks, while the initial setup complexity is justified by the long-term operational efficiency gains.
Data Source
AI summary
Systems, computer program products, and methods are described herein for implementing real-time resource transmission based on a trigger in a distributed electronic network. The present invention is configured to identify a resource advance account; identify a resource surplus associated with the resource advance account; identify, based on the resource surplus, a trigger comprising data of the resource surplus; determine whether the resource advance account is associated with a resource storage account, wherein, in an instance where the resource advance account is associated with the resource storage account, identify the resource storage account; determine, in response to identifying the resource storage account, whether the resource storage account is associated with an electronic resource storage account; and initiate, based on the identification of the electronic resource storage account identifier, a resource transmission based on the resource surplus to the electronic resource storage account associated with the electronic resource storage account identifier.


