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Cloud Migration and Infrastructure Enhancement for Wind Energy Systems
  1. case
  2. Cloud Migration and Infrastructure Enhancement for Wind Energy Systems

Cloud Migration and Infrastructure Enhancement for Wind Energy Systems

stxnext.com
Energy & natural resources

Identifying Challenges in Traditional Infrastructure for Wind Energy Solutions

The client faces challenges with on-premise server maintenance, outdated desktop applications, and inefficient deployment processes, hindering their ability to scale operations and support innovation in wind turbine performance and protection.

About the Client

A global enterprise specializing in wind turbine blade performance solutions, seeking to modernize its IT infrastructure to improve scalability, efficiency, and sustainability.

Key Goals for Infrastructure Modernization and Process Optimization

  • Migrate existing on-premise servers to a scalable Cloud environment to eliminate hardware maintenance and facilitate deployment.
  • Upgrade desktop applications and internal libraries to enhance functionality and operational efficiency.
  • Implement advanced CI/CD pipelines to streamline build, test, and deployment processes.
  • Provide continuous support for bug fixes, feature development, and system enhancements.
  • Establish scalable, automated backup and disaster recovery solutions to ensure data safety.

Core Functional System Requirements for Infrastructure and Application Enhancement

  • Server & Workstation Migration to Cloud Platforms for scalability and maintenance reduction.
  • Upgrade of Desktop Applications and Internal Libraries for enhanced performance.
  • Development of Modern CI/CD Build and Release Pipelines for efficient deployment workflows.
  • Implementation of Continuous Support modules for bug fixing and feature updates.
  • Automated Backup and Data Recovery Processes for resilient operations.

Preferred Technologies and Architectural Approaches

Cloud Platform (e.g., AWS or equivalent) for infrastructure migration
Containerization and orchestration tools for deployment (e.g., Docker, Kubernetes)
Version control and CI/CD tools for automated build and release pipelines

External System Integrations and Data Support Requirements

  • Backup and disaster recovery services
  • Internal monitoring and alerting systems
  • Application libraries and APIs for system enhancements

Non-Functional System Requirements for Scalable and Reliable Infrastructure

  • Scalability to support increasing computational loads and deployment frequency
  • High availability with automated failover capabilities
  • Data security and compliance with industry standards
  • Automated backup with confirmation of data integrity

Projected Business Benefits and Performance Outcomes

The implementation of a scalable cloud infrastructure coupled with modern application upgrades and process automation is expected to significantly improve deployment efficiency, reduce hardware and maintenance costs, and increase system reliability. The project aims to enable the client to support continuous innovation, enhance operational stability, and maintain leadership in wind turbine performance solutions.

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