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50kW 448kWh Battery System for Peak Shaving in China

HBOWA supplied a 50kW 448kWh battery energy storage system for a factory project in China. The system is designed for factory peak shaving, load shifting, and daily energy cost optimization.

The project uses a 50kW Deye hybrid inverter and 448kWh LiFePO₄ battery storage, helping the factory store electricity during lower-load periods and discharge during peak-demand periods.

50kw-448kwh-Battery-System-for-Peak-Shaving-in-China

Project Overview

ItemDetails
Project LocationChina
ApplicationFactory Peak Shaving Energy Storage
System Capacity50kW / 448kWh
Inverter50kW Deye Hybrid Inverter
Battery TypeLiFePO₄ Battery Storage System
Battery Configuration2 battery clusters, 14 battery packs per cluster
Total Battery Packs28 battery packs
Battery Capacity16kWh per pack, 448kWh total
Operating ModePeak shaving + load shifting + factory self-use
DeploymentIndoor factory energy storage system

Customer Challenge

The factory needed a more efficient way to manage electricity use during peak production hours. High power demand can increase electricity costs and add pressure to the factory’s grid connection. The factory manager required a battery storage system that could reduce peak grid consumption, improve energy management, and support more stable factory operation.

Energy Storage Solution

HBOWA provided a 50kW 448kWh battery energy storage system with a 50kW Deye hybrid inverter.

The system includes:

  • 50kW Deye hybrid inverter
  • 2 high-voltage battery clusters
  • 14 battery packs per cluster
  • 28 battery packs in total
  • 16kWh per battery pack
  • 448kWh total battery capacity

The system supports charging during low-load periods and discharging during peak-demand periods for factory peak shaving and load shifting.

50kw-448kwh-battery-storage-system-with-high-voltage-battery-and-50kw-deye-hybrid-inverter

Project Benefits

  • Peak Shaving for Factory Loads
    Reduces grid demand during high-consumption periods.
  • 448kWh Large Battery Capacity
    Supports longer energy storage duration for daily factory operation.
  • Lower Electricity Cost Potential
    Helps shift electricity use from peak periods to lower-cost periods.
  • Stable Factory Power Management
    Supports production equipment, lighting, pumps, and other factory loads.
PROCESS

How to Start Your Project with HBOWA?

Before We Quote, Tell Us 4 Things

1

Project Location & Grid

Country, grid stability, voltage, frequency, and whether grid connection or power selling is required.

2

Application Scenario

Backup power / solar storage / peak shaving / demand charge reduction / off-grid / hybrid / microgrid use.

3

Load & Energy Demand

Daily kWh use, peak power, operating hours, main loads, and whether motors or inductive loads are used.

4

Site & Special Requirements

Indoor or outdoor installation, available space, existing PV, generator, anti-backflow, EMS, or other special needs.

Send Project Details

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.

Get Your Tailored Solar Solutions with HBOWA

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