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Energy storage

Produce, consume, store and sell your own electricity
Adjusted energy costs
Using stored energy when prices are high will save you money and lower your monthly costs.
Smart management
With the help of the application, you can precisely control the use of energy and manage costs.
Sustainable use
Maximize the use of renewable energy while reducing environmental impact.
A smart investment in a greener future
Energy produced from renewable sources can be used when the wind is not blowing, and the sun is not shining. The biggest concern with renewable energy is seasonality. What do solar park owners do in the evening after 5 PM or in winter?

An energy storage system can be charged directly from the grid when energy prices are low. During more expensive hours, the stored energy can be used for personal needs or sold back to the grid.
5
MWh+
installed capacity
3
MW+
installed power
Energy trading
From 2025, the Baltic States must support frequency containment and regional frequency with two types of reserves – Frequency Containment Reserves (FCR) and Frequency Restoration Reserves (FRR). A trading market for both types of reserves will emerge.
Five steps to an energy storage solution
01
Contact us
Leave us your contact details and describe your vision in a few words.
02
We will make you an offer
If necessary, we will come to the site to find the best solution for you.
03
We obtain the necessary permits and prepare for installation
We prepare the design and formalize the necessary permits and documents. We help to apply to your network operator. This stage is the longest, because communication with different authorities can take almost 3 months.
04
We install the solution
We will agree a suitable time for the installation of the solution with you. Installation of the panels and battery will take a few days.
05
Start generating electricity yourself
Enjoy lower electricity bills and keep an eye on the environmentally friendly electricity output of your solar panels using your smartphone. For questions, breakdowns or maintenance, we are only a phone call away.
Send an inquiry
Consume wisely
With the help of real-time data, you can optimize energy consumption, reducing unnecessary costs and preventing energy loss. This means more control, lower bills and a smaller ecological footprint.
Smart energy management
Solar panel solutions
Solar panels help reduce dependence on grid electricity, guaranteeing you lower energy costs in the long term and ensuring cost predictability.
Solar energy solutions
FAQ
What is an energy storage device and how does it work?

An energy storage device is a system that collects and stores energy for later use, helping to balance energy demand and supply. The work process is divided into three stages:

  1. Charging: Energy is obtained from the sun and converted into a storable form.
  2. Säilitamine: Energy is stored in chemical, mechanical or thermal form.
  3. Storage: The energy is converted back into usable electricity or heat.

Common solutions include lithium-ion batteries. Energy storage devices are important for the optimal use of renewable energy, as they allow energy to be consumed even during production interruptions.

What are the benefits of energy storage?

The benefits of energy storage are as follows:

  1. Ensuring energy: Enable energy to be stored and used during production breaks, ensuring continuous supply even in the event of interruptions in renewable energy sources (e.g., solar panels).
  2. Increasing independence from the network: Reduce dependence on the electricity grid, enabling producers to optimize the consumption of self-produced energy and increase the autonomy of the energy system.
  3. Peak load management: Help reduce peak loads, which optimizes energy use and reduces fluctuations in electricity costs, providing greater cost efficiency.
  4. Integration of renewable energy: Optimize the use of renewable energy sources by storing overproduced energy and thereby reducing energy loss and increasing the overall efficiency of the system.

Security of energy supply: Ensure a continuous energy supply as a backup, reducing the impact of power outages and improving the reliability of the energy supply.

Enerji depolama çözümlerinin maliyeti ve geri ödeme süresi nedir?

Enerji depolama çözümlerinin maliyeti ve geri ödeme süresi kullanılan teknolojiye, sistemin büyüklüğüne ve şebeke enerji birim fiyatlarına bağlıdır. Geri ödeme süresinin belirlenmesinde temel faktörler:

  1. Kullanılan Güneş enerjisi sistem maliyeti.
  2. Elektrik birim fiyatları.
  3. Ülke enflasyon oranı.
Enerji depolama cihazları elektrik kesintisi sırasında da çalışır mı?

Evet, enerji depolama cihazları, sistem yedek güç modunu destekleyen bir hibrit invertörle donatılmışsa elektrik kesintisi sırasında da çalışır. Böyle bir invertör otomatik olarak enerji depolama cihazına geçebilir ve şebeke bağlantısı kesildiğinde eve elektrik sağlamaya devam edebilir. Sistem, bir kesinti sırasında tüketim ihtiyaçlarını karşılamak için yeterli depolama kapasitesine sahip olmalıdır.

Enerji depolama cihazı elektrik faturamı azaltmama yardımcı olabilir mi?

Can the energy storage device help me reduce my electricity bill?

An energy storage device helps to reduce electricity bills, especially if you use renewable energy, i.e. solar panels. The main ways in which an energy storage can help save costs:
1. Shifting consumption to cheaper hours: By storing electricity when the price of electricity is low (e.g., at night) and using it during peak hours when the price is higher.
2. Optimization of renewable energy: If you have solar panels, you can store the energy produced during the day but not immediately used and consume it later, for example in the evening, instead of buying more expensive electricity from the grid.

Reducing network charges: technical maintenance work: In some places, network charges are also applied to the consumption depending on the peak consumption level. By storing energy and using it to reduce load, these charges can be reduced.

Is a grid inverter also suitable for using an energy storage device?

A hybrid inverter is suitable for use as an energy storage device, which can both store energy from solar panels and, if necessary, direct energy from the battery or network to home use.

Enerji depolamayı şarj etmek ne kadar sürer?

Enerji depolamanın tam şarj süresi, enerji depolamanın nominal gücüne ve kullanılan hibrit invertörün nominal gücüne bağlıdır. Hibrit invertörler için en yaygın nominal kapasiteler 10-15 kWh aralığında ve enerji depolama cihazları 15-30 kWh aralığındadır. Örneğin: 15 kWh'lik bir hibrit invertör 30 kWh'lik bir enerji depolama cihazını iki (2) saat içinde tamamen şarj edebilir.

Evimdeki enerji depolama cihazı ne kadar güvenli?

Ev enerji depolama cihazları, sertifikalı ve profesyonel bir kurulumcu tarafından güvenlik standartlarına göre kurulur. LFP (Lityum, Demir, Fosfat) piller, otomobillerde ve ev aletlerinde kullanılan lityum iyon pillerden önemli ölçüde daha güvenlidir. Bir lityum-iyon pil hasar gördüğünde, oksijenle temas ettiğinde yanma reaksiyonuna neden olan gaz üretilir. Bu yüzden sık sık arabaların ve telefonların alev aldığını duyarız. LFP pil teknolojisi farklıdır. LFP hücresi bozulursa/kırılırsa, böyle bir kimyasal reaksiyon meydana gelmez. Başka bir deyişle, pilin kendisi alev almaz, bu da ev çözümlerinin pillerini daha güvenli hale getirir.

How is the energy storage device compatible with solar panels?

The energy storage device is compatible with solar panels by storing excess solar energy that can be used later, such as at night or in cloudy weather. A hybrid inverter manages energy flows by converting the electricity produced by the panels for immediate consumption or storage in batteries. When the solar panels are not producing energy, what is stored in the battery is used, reducing dependence on the grid and reducing electricity costs. When the battery is fully charged, excess energy can be fed back into the grid. This system increases energy independence and optimizes costs.

Enerji depolama cihazları nasıl şarj ve deşarj edilir?

Enerji depolama cihazlarının şarj ve deşarjı elektrokimyasal süreçler ve elektronik kontrol yoluyla yapılır:

  1. Şarj etme: Depolama birimi bir kaynaktan (örn. güneş panelleri) elektrik çeker. Lityum iyonları katottan anoda doğru hareket eder. Şarj kontrolörü aşırı şarjı önlemek için akım ve voltajı düzenler.
  2. Boşaltma: Enerjiye ihtiyaç duyulduğunda, iyonlar anottan katoda geri dönerek elektriği serbest bırakır. Bir invertör doğru akımı (DC) alternatif akıma (AC) dönüştürür. Sistem aşırı deşarjı önlemek için batarya seviyesini izler.

Süreç elektronik olarak kontrol edilerek verimlilik ve güvenlik sağlanır.

Can I use energy from energy storage to charge an electric car?

The stored energy can be used to charge an electric car. Very often, the battery capacity of an electric car is considerably larger. The capacity of the energy storage and the rated power of the inverter must be considered.

Enerji depolama cihazlarının kullanım ömrü ne kadardır?

Enerji depolama cihazlarının ömrü teknolojiye ve kullanım koşullarına bağlıdır. Ürün portföyümüzde yalnızca 15 yıl veya 6000 ila 9000 şarj döngüsü ömrüne sahip Lityum-iyon bataryalar bulunmaktadır.  Kullanım ömrü, şarj döngüleri, çalışma sıcaklığı ve bakım ile belirlenir.

This is your first step towards investing in your future while protecting both the environment and the family budget.

We will get back to you in 24 hours.
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