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Project
DH200F,100kW/215kWh
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Address
Netherlands
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Date
Feb 2026
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Application
Dynamic Capacity Expansion + PV Consumption
Background
In recent years, as electrification continues to grow, many regions in the Netherlands have been facing increasing grid congestion. In office parks and commercial facilities, electricity demand from IT infrastructure, office equipment, and employee EV charging often concentrates during daytime working hours, creating significant power peaks.
A modern HR agency located in Venray encountered this exact challenge. With the expansion of its IT systems and the growing number of EV chargers for employees, electricity demand during office hours began to surge, putting pressure on the facility’s transformer capacity and potentially leading to higher demand charges or costly grid upgrades.

Introduction
To optimize energy usage and avoid expensive grid expansion, the company deployed two Dyness DH200F commercial energy storage systems as part of its energy management solution.
The DH200F features an all-in-one design with a single-cabinet capacity of 215kWh, integrating energy storage, intelligent control, and power management. The system supports up to 12 units in AC parallel, providing flexible scalability for future expansion. With IP55 protection and an intelligent air-cooled thermal management design, the system ensures reliable operation in commercial outdoor environments.

Through intelligent peak-shaving control, the DH200F strategically discharges during peak consumption periods, smoothing transformer loads and improving the overall efficiency of the facility’s energy usage.
Project Value
After the deployment of the DH200F system, the company successfully optimized its power consumption structure and improved energy management across the facility.

The system helped avoid costly transformer capacity upgrades, reduce peak demand charges, and enhance overall power stability. At the same time, it provides a flexible foundation for future energy expansion.
Amid the ongoing grid congestion challenges in the Netherlands, this project highlights how commercial energy storage can increase demand-side flexibility while delivering tangible economic benefits for businesses.
Typical Case
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