Dynamic UI Framework for Cross-System Workflow Orchestration
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Solution Overview
Problem
Existing systems for complex multi-step workflow journeys, such as electronic lending, are inefficient and redundant due to the inability to integrate disparate operations, components, and systems, leading to operational redundancies, high latency, inconsistent user experiences, and high maintenance costs, and lack the infrastructure for real-time state management and data security.
Innovation Solution
A unified platform integrating frameworks for authentication, dynamic user interfaces, workflow state management, active data loss prevention, orchestration, and document automation, capable of operating across diverse systems and protocols, and supporting micro-service architectures.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If multiple independent solutions and systems are implemented for complex multi-step workflow journeys, then each specialized operation can be performed with its own dedicated components, but operational redundancies increase, processing becomes disjointed and inefficient, and maintenance costs rise
Solution Approach 1:
The patent combines multiple independent specialized systems into a single unified platform that can handle complex multi-step workflow journeys. The unified platform integrates authentication, user interface generation, workflow state management, orchestration, and document automation into one cohesive system, eliminating operational redundancies while maintaining specialized processing capabilities through modular components within the unified architecture.
Solution Approach 2:
The unified platform is designed to perform multiple functions across different workflow journeys and systems. It can authenticate users, generate dynamic user interfaces, manage workflow states, orchestrate microservices, and automate document generation within a single multi-functional system, replacing the need for multiple separate specialized systems.
2Reliability
If each workflow journey independently initiates its own combination of solutions, then each journey can be processed with dedicated resources, but system complexity increases and common operations cannot be leveraged across multiple journeys
Solution Approach 1:
The unified platform is segmented into distinct modular components including authentication framework, dynamic user interface framework, workflow state management framework, orchestration engine, and document automation framework. Each module handles specific aspects of workflow journeys independently, allowing journey-specific processing while reducing overall system complexity through clear separation of concerns.
Solution Approach 2:
The workflow state management framework and orchestration engine act as intermediaries between different workflow journeys and the underlying specialized components. They manage common operations centrally and coordinate interactions between modules, enabling multiple journeys to leverage shared resources while maintaining journey-specific processing requirements.
3Adaptability or versatility
If manual coordination of output between systems is performed, then flexibility in handling different protocols and formats is maintained, but processing time increases and latency is high
Solution Approach 1:
The orchestration engine dynamically adjusts parameters such as communication protocols, data formats, and processing modes based on the specific requirements of each workflow journey and connected system. This automated parameter adaptation eliminates manual coordination while maintaining protocol compatibility across diverse systems.
Solution Approach 2:
The system performs preliminary configuration and setup of communication parameters, data formats, and integration protocols before workflow journeys begin. This pre-configuration enables automated coordination without manual intervention during execution, reducing processing latency while maintaining adaptability to different system requirements.
4Reliability
If continual updating and maintenance of multiple independent systems is performed, then each system can be optimized for its specific function, but operating and maintenance costs increase significantly
Solution Approach 1:
By merging multiple independent systems into a single unified platform with shared infrastructure, the patent reduces the number of separate systems requiring maintenance. Common components such as authentication mechanisms, database connections, and deployment pipelines are maintained once at the platform level rather than separately for each system, significantly reducing maintenance costs while preserving specialized functionality through modular design.
Data Source
AI summary
A unified platform may comprise a combination of independent frameworks that have been integrated and configured to collaboratively operate seamlessly. In some aspects, the unified platform may comprise one or more of an authentication and authorization framework, a dynamic user interface framework, a workflow state management framework, a notification and active data loss and prevention (DLP) engine framework, and an orchestration engine framework. Each of the frameworks included in the unified platform may comprise one or more of the plurality of computing devices executing computer-readable program instructions.


