★ European funding 60 kWh storage capacity 30 kW hybrid inverter BESS connected to an existing photovoltaic system PKIP 2021–2027 European funding
Programme: National Strategic Reference Framework (NSRF) 2021–2027: European Funding
We handled the eligibility check, paperwork and programme reporting.
The existing photovoltaic system generates a significant portion of the energy during daylight hours, but production does not always match the facility’s current consumption. Without a battery, some of the available solar energy cannot be optimally utilized on-site. The main goal was to increase self-consumption of renewable energy, with the daily surplus being stored and used during hours when production declines but consumption remains high.
We installed a modular high-voltage battery system with a total capacity of 60 kWh and a Felicity Solar three-phase hybrid inverter. The solution is integrated with the existing photovoltaic plant and automatically manages the charging and discharging of the batteries based on the site’s available power generation and consumption. The modular architecture ensures reliable energy management, facilitates maintenance, and allows for future capacity expansion as the company's needs change.
After the system is installed, most of the solar energy generated is used for the household’s own consumption. The energy stored during the day can be used later in the day, reducing the need to purchase electricity from the grid. The company benefits from more efficient use of its existing photovoltaic investment, better control over energy flows, and a technical foundation for more predictable costs and future development.
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With the implementation of the energy storage system, we are using the energy from our existing photovoltaic plant more efficiently. We received professional service, clear communication, and a solution tailored to the company’s actual needs.
Photovoltaic system for a furniture workshop, installed on a sandwich panel roof and combined with a Deye hybrid inverter and battery storage. The facility operates entirely on its own power supply, providing a high level of energy independence, lower operating costs, and reliable production without dependence on the utility grid.
The solar power system was installed on a two-storey building with a low-slope bituminous roof. To ensure the optimal angle of the panels towards the sun, we designed and manufactured custom mounting structures. This allowed us to improve solar energy capture and maximise the overall efficiency of the system.
The photovoltaic system is installed on an aluminum structure on the roof of the container and is complemented by a battery energy storage system. The solution provides reliable power supply and greater energy independence for the facility, which is used for training and the social and professional integration of people.
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