Zero-Carbon Industrial Park Energy Storage Project

Release time: 2026-09-07

Project Background

A commercial and industrial park was seeking to reduce its dependence on grid electricity while improving energy efficiency and supporting its transition toward a lower-carbon energy infrastructure.

With multiple buildings and production loads operating on different schedules, the park needed a flexible energy storage system that could coordinate renewable generation, grid power and changing electricity demand.

Customer Challenge

The park faced several common C&I energy challenges:

  • High peak electricity demand
  • Different load profiles across buildings and facilities
  • Limited coordination between PV generation and electricity consumption
  • Need for better energy management
  • Growing demand for low-carbon energy infrastructure

The customer needed more than a standalone battery system. The project required coordinated control across the power generation, storage and load sides.

System Configuration

  • 750 kW Energy Storage System
  • 1.5 MWh Battery Capacity
  • Energy Storage PCS
  • MID intelligent distribution and interface system
  • EMS
  • Grid-connected PV and facility loads

Higre Technology

Higre integrated the PCS, MID and EMS into a coordinated energy management architecture.

The MID provides the common interface between the grid, ESS, PV and loads, while the EMS manages energy dispatch according to system operating conditions.

The architecture supports functions including demand management, peak shaving, load management and coordinated operation of multiple energy sources.

Project Deployment

The system was integrated into the park’s existing electrical infrastructure with a modular architecture designed to simplify installation and commissioning.

The MID’s modular interface structure enables flexible integration with existing distribution systems without requiring extensive system reconstruction.

Deployment Result

The project established a more flexible energy infrastructure for the industrial park, enabling:

  • Peak demand management
  • Improved energy utilization
  • Coordinated PV and ESS operation
  • Intelligent load management
  • Centralized system monitoring

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