Data Center Configuration Management via Generic Mapping
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Solution Overview
Problem
Current data center management solutions lack domain knowledge for end-to-end strategy creation, technology independence, and automated defect identification, requiring manual efforts and inadequate reporting for stakeholder notifications.
Innovation Solution
A system and method that includes a knowledge repository, processor, and memory with modules for receiving input parameters, determining objectives, creating generic configurations, mapping to technology-specific formats, and designing tool-specific configurations to manage each phase of the data center life cycle.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If manual efforts are used for data center management, then flexibility and adaptability are maintained, but productivity and operational efficiency deteriorate
Solution Approach 1:
The system enables automated self-service through the receiving module that automatically captures input parameters, the determining module that autonomously identifies objectives, and the designing module that automatically generates tool-specific configurations, eliminating the need for manual intervention in data center management tasks
Solution Approach 2:
The patent replaces manual mechanical processes with an automated information processing system where the processor executes modules stored in memory to perform receiving, determining, creating, mapping, and designing functions, substituting human effort with computational automation
2Adaptability or versatility
If technology-specific solutions are implemented, then reliability for specific tools is improved, but adaptability to different technologies deteriorates
Solution Approach 1:
The patent introduces a mapping module as an intermediary that translates between generic configurations and technology-specific configurations, enabling the system to work with multiple vendor tools while maintaining a unified, technology-independent management approach
Solution Approach 2:
The system creates a universal generic configuration framework that can be adapted to multiple different data center management tools and vendors, making the solution technology-independent while maintaining reliability through standardized configuration processes
3Reliability
If comprehensive management of all life cycle phases is implemented, then reliability of data center operations is improved, but device complexity increases
Solution Approach 1:
The patent segments the data center management process into distinct modular phases: receiving input parameters, determining objectives, creating generic configurations, mapping to technology-specific formats, and designing tool-specific configurations. Each phase is handled by a separate module, making the complex system manageable and maintainable
Solution Approach 2:
The system manages complexity by changing parameters systematically - transforming input parameters into objectives, then into generic configurations, then into technology-specific configurations, and finally into tool-specific implementations, with each transformation step simplifying the overall management complexity
4Productivity
If automated objective determination and configuration creation are implemented, then productivity is improved, but manufacturing precision deteriorates
Solution Approach 1:
The system incorporates feedback mechanisms where the mapping module validates generic configurations against technology-specific requirements, and the designing module verifies tool-specific configurations against original input parameters, ensuring accuracy is maintained throughout the automated process
Solution Approach 2:
The patent performs preliminary action by creating generic configurations before technology-specific implementation, establishing a validated framework in advance that ensures accuracy is built into the automated process from the beginning rather than added later
Data Source
AI summary
System(s) and method(s) for facilitating design configuration of data center to provide management of the data center is disclosed. Input parameters providing design and operational requirements are received. Based on the input parameters, objectives are determined. The objectives refer to one or more technical requirements with respect to plurality of phases associated with the life cycle of the data center. The objectives are then used to create a generic configuration with respect to one or more services associated with the life cycle. The generic configuration is mapped with a predefined set of configuration stored in a knowledge repository in order to obtain a technology specific format. The generic configuration is further used to design a tool specific configuration to provide management of each phase of the life cycle of the data center.


