5MW 16MWh Factory BESS Energy Storage System in Ukraine
HBOWA supplied a 5MW / 16MWh BESS energy storage system for a factory project in Ukraine. The system is designed to support factory backup power and stable industrial power use. With 16MWh battery capacity, the system can provide large-scale energy storage for factory loads and improve power reliability during high-demand periods.

Project Overview
| Item | Details |
|---|---|
| Project Location | Ukraine |
| Application | Factory BESS Energy Storage |
| System Capacity | 5MW / 16MWh |
| Battery Type | LiFePO₄ Battery Energy Storage System |
| Operating Mode | Peak shaving + load shifting + backup power |
| Deployment | Installed for factory power management |
Customer Challenge
The factory needed a large-capacity energy storage system to improve power reliability and manage high electricity demand. The customer told us that grid outages may affect production continuity and equipment safety. He required a BESS solution that could reduce peak demand while also providing backup power support.
Energy Storage Solution
HBOWA provided a 5MW / 16MWh BESS energy storage system for the factory’s power management. After installation, the system helps the customer reduce peak power demand, improve power stability, and provide reliable backup power for critical industrial loads.
During normal operation, the battery system stores energy during lower load period, and discharges during peak demand period. When grid power becomes unstable, the BESS system provides backup power for important factory loads.
Project Benefits
- Peak Shaving for Industrial Loads
Reduces grid demand during high-consumption periods. - Improved Power Reliability
Helps maintain factory operation during grid instability. - Flexible Energy Management
Supports charging and discharging strategies based on factory load demand.
How to Start Your Project with HBOWA?
Before We Quote, Tell Us 4 Things
Project Location & Grid
Country, grid stability, voltage, frequency, and whether grid connection or power selling is required.
Application Scenario
Backup power / solar storage / peak shaving / demand charge reduction / off-grid / hybrid / microgrid use.
Load & Energy Demand
Daily kWh use, peak power, operating hours, main loads, and whether motors or inductive loads are used.
Site & Special Requirements
Indoor or outdoor installation, available space, existing PV, generator, anti-backflow, EMS, or other special needs.
How HBOWA Handles Your Project
1 Project Location & Grid
We first confirm where the cabinet system will be used and how it connects to the local grid.
2 Application Scenario
Define backup power, solar storage, peak shaving, off-grid, or hybrid use.
3 Load & Energy Demand
Load data helps us calculate cabinet capacity, PCS/ inverter size, backup time, and surge load margin.
4 PV & Existing Equipment
We check whether the storage cabinet needs to work with solar panels, generators, transformers, or existing equipment.
5 Installation Site
Confirm indoor/outdoor installation, cooling method, cable distance, and installation cost.
6 Solution & Quotation
After collecting the project information, HBOWA prepares a practical cabinet solution and quotation for you.






