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Large-Scale Battery Storage for Grid

Objective: To design, develop, and implement a large-scale battery storage system to enhance grid stability and support renewable energy integration.

Key Benefits: Improved grid reliability, energy efficiency, and integration of renewable energy sources.

Project Background

Introduction: The need for grid-scale energy storage has become increasingly important due to the growing integration of renewable energy sources such as solar and wind. These sources are intermittent, leading to challenges in maintaining grid stability. Battery energy storage systems (BESS) offer a solution by storing excess energy and releasing it during peak demand periods.

Project Origin: This project was initiated to address the challenges of grid stability and energy storage in India.

Project Objectives

  • Enhance: the integration of renewable energy sources.
  • Provide: backup power during grid outages.
  • Reduce: reliance on fossil fuel-based peaking power plants.

Project Scope

  • Design: Engineering design of the battery storage system, including battery selection, power conversion systems, and integration with the grid.
  • Installation: Installation of battery units, inverters, transformers, and control systems.
  • Commissioning: Testing and commissioning of the system to ensure it meets all technical and safety standards.
  • Operation: Implementation of an operational strategy to optimize the performance of the battery storage system.
  • Maintenance: Regular maintenance schedule to ensure the longevity and reliability of the system.

Specifications


  • Special Features: 1C Discharge, 1C charging
  • Model Number: 1.4 MW BESS
  • Voltage: 1075 Volts DC
  • Frequency: 50/60 Hz
  • Power Source: Grid & Solar & DG
  • Manufacturing Year: 2023
  • Item Weight: 2 TON