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Implementation of IEEE 2030.5 Protocol for California Grid Compliance and Scalable Energy Management System
  1. case
  2. Implementation of IEEE 2030.5 Protocol for California Grid Compliance and Scalable Energy Management System

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Implementation of IEEE 2030.5 Protocol for California Grid Compliance and Scalable Energy Management System

scalosoft.com
Energy & natural resources
Utilities
Technology

Challenges in Grid Compliance and Scalability

Need to comply with California's IEEE 2030.5 protocol requirements for grid communication while scaling energy management systems cost-effectively. Existing systems require refactoring to improve stability, enable seamless communication with grid aggregators, and support rapid market expansion without excessive costs.

About the Client

Provider of residential and large-scale solar power solutions collaborating with global organizations

Objectives for Grid Compliance and System Enhancement

  • Develop a scalable Proof of Concept (PoC) for IEEE 2030.5 protocol implementation
  • Refactor existing codebase to improve system stability and scalability
  • Ensure compliance with California Rule 21 and grid program requirements
  • Enable real-time communication between solar inverters and grid aggregators

Grid Communication and Energy Management System Requirements

  • IEEE 2030.5 protocol-compliant communication layer
  • Real-time inverter parameter monitoring and control
  • Grid aggregator integration module
  • Scalable architecture for future product line expansion
  • Demand response management system

Technology Stack for Energy Management System

Java
AWS
MySQL
Terraform

Required System Integrations

  • California grid aggregator systems
  • Existing solar inverter management platforms
  • Demand response program APIs

Non-Functional Requirements

  • High scalability for nationwide deployment
  • Compliance with IEEE 2030.5 and California Rule 21 standards
  • Real-time performance with sub-second response times
  • Data security and encryption for energy communications
  • Fault-tolerant system architecture

Expected Business Impact of Implementation

Enables participation in California's renewable energy programs, supporting market expansion into the state responsible for 50% of US renewable energy innovation. Reduces long-term development costs through scalable architecture while maintaining compliance with evolving grid standards and improving grid program participation capabilities.

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