Trusted Integration Pathways for Non-Technical Users
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Solution Overview
Problem
End users, such as non-technical business users, face challenges in creating and managing system-to-system integrations for moving enterprise data between different systems due to the complexity of existing integration technologies, which require specialized skills and do not meet individual needs.
Innovation Solution
A platform integration system (PIS) enables end users to create and deploy simplified trusted integration pathways by providing a user-friendly interface for selecting systems, configuring data transfers, and setting recurrence, using pre-defined metadata to map human-understandable terms to technical parameters, allowing non-expert users to automate data movements while adhering to organizational policies.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If traditional integration technologies are used, then system-to-system integrations can be established, but the complexity of creation and management increases significantly for non-technical users
Solution Approach 1:
The patent introduces a visual integration canvas as an intermediary layer between non-technical users and complex integration technologies. The canvas provides drag-and-drop components, pre-built connectors, and automated workflow generation that shield users from underlying technical complexity while enabling system-to-system integrations.
Solution Approach 2:
The system enables non-technical users to independently create and manage integrations through intuitive visual interfaces without requiring specialized technical knowledge. The automated code generation and configuration features allow users to service their own integration needs without relying on technical experts.
2Adaptability or versatility
If traditional integration technologies are used, then data can be moved between systems, but specialized technical skills are required
Solution Approach 1:
The patent employs pre-built integration templates, reusable connectors, and copyable workflow patterns that can be replicated across different systems. These templates encapsulate complex integration logic, allowing users to copy and adapt proven integration patterns without recreating them from scratch, thereby eliminating the need for specialized skills.
Solution Approach 2:
The visual integration canvas provides universal components and connectors that work across multiple systems and data types. This multi-functional platform enables a single tool to handle diverse integration scenarios, making the technology accessible to users regardless of their technical expertise or the specific systems they need to integrate.
3Productivity
If end users can create integrations independently, then operational efficiency improves, but security and policy compliance may be compromised
Solution Approach 1:
The patent implements localized security controls and policy enforcement at each integration point within the visual canvas. Different security rules, access controls, and compliance policies can be applied to specific connectors, data types, or workflow stages, allowing independent users to create integrations while maintaining appropriate security and compliance standards for each local context.
Solution Approach 2:
The system incorporates real-time validation, security checks, and policy compliance verification that provide immediate feedback to users during integration creation. This feedback mechanism guides users to create secure, compliant integrations by highlighting potential issues and suggesting corrections before deployments occur, thereby maintaining reliability while enabling user independence.
Data Source
AI summary
Methods and systems are used for end user creation of trusted integration pathways between different enterprise systems. As an example, a set of identity information associated with an end user is determined. A set of systems and a set of configurable trusted integration pathways that the end user is authorized to create a trusted integration pathway between two systems is determined. A selection of a source system and a destination system from the set of systems is received. A set of information from the source system that is allowed to be shared with the destination system based on pre-defined metadata is identified. A trusted integration pathway between the source system and the destination system is generated, based on a selection of at least a portion of the set of information and the pre-defined metadata.


