Digital Command Registration Objects for Multi-Application Execution
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Solution Overview
Problem
Existing systems struggle to efficiently integrate and leverage data from multiple applications within a multi-application network for process optimizations, data cataloging, exception event handling, and data storage, particularly in registering and managing digital commands based on user-specific or group-specific data.
Innovation Solution
A method and system that utilize a data engine to analyze digital request data objects, encapsulate commands in registration objects, and manage applications based on context data, user profiles, and device profiles, enabling seamless execution across a multi-application network.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If data from multiple applications is integrated and leveraged for process optimizations and data management, then productivity and data efficiency are improved, but device complexity and system integration difficulty increase
Solution Approach 1:
The patent introduces a data engine as an intermediary component that sits between multiple applications and the user interface. This data engine consolidates data from various applications, processes it centrally, and presents unified results, thereby improving productivity without proportionally increasing system complexity. The data engine acts as a mediator that manages the complexity internally while providing simplified access to users.
Solution Approach 2:
The system implements a universal data engine that can handle multiple types of applications and data formats through a single interface. This multi-functional approach allows the system to integrate diverse data sources without requiring separate integration mechanisms for each application type, thus improving productivity while controlling complexity through standardized processing pathways.
2Ease of operation
If commands are registered and executed based on user-specific or group-specific data, then ease of operation and user experience are improved, but device complexity increases
Solution Approach 1:
The system performs preliminary actions by pre-registering commands with their associated user-specific or group-specific data in registration objects. This advance preparation allows commands to be executed quickly and easily when needed, as the system has already processed and organized the relevant data. The complexity of user-specific data management is handled in advance during registration, not during execution.
Solution Approach 2:
The patent uses registration objects that contain copies or representations of command data and associated user/group information. Instead of directly processing complex user-specific data during command execution, the system works with structured copies stored in registration objects, simplifying the execution process while maintaining the necessary user-specific context.
3Ease of operation
If multiple interfaces are consolidated into a single interface, then ease of operation is improved, but device complexity increases
Solution Approach 1:
The patent merges multiple application interfaces into a single unified interface that provides access to functionality from various applications. This consolidation improves ease of operation by presenting a consistent, simplified interface to users. The complexity of managing multiple interfaces is handled internally by the data engine, which coordinates access to underlying applications through the unified interface.
Data Source
AI summary
This disclosure relates to methods for registering a command in a multi-application network. The methods include: determining a computing operation for the multi-application network; receiving a command associated with the computing operation for a digital request data object; encapsulating, in a registration object: first semantic or syntactic data associated with the first command, a digital path to a first application for executing the first computing operation, and context data associated with the first command; and storing, in a database, the first registration object. In addition, the methods include: receiving a first input; analyzing the first input to determine second semantic or syntactic data; determining the first command associated with the first computing operation; accessing the first registration object based on the determined first command; and accessing, based on the digital path of the first registration object, a first application for the first computing operation.


