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Lithuania

Solar Market Outlook in Lithuania

The future of the solar power market in Lithuania is shaped by a wide range of factors such as feed-in tariff, availability of financing, incentives, and other key players. There are also factors that hinder the growth of the country’s solar power market including the uncertainty of large-scale developments, high capital expenditure, and increasing competition. 

Despite the challenges and hurdles that are present, the Lithuanian government along with the Lithuanian Business Support Agency continues to support any step forward in the country’s solar energy sector. One of the major breakthroughs for the solar industry is the construction of a floating solar PV power plant. The construction of this facility cost $270,000 and is expected to produce 900 MW of power. 

The first stage of the said project is set to be completed by the end of 2021. There are also more projects lined up to facilitate more solar power generation in the country that would be enough to power 120,000 households. 

Since this floating power plant is the first of its kind in the region, the Lithuanian government is hoping that it will attract more investments in the solar power market. 

Solar Energy Equipment Supply Capacity in Lithuania

The growth rate of the solar energy sector in Lithuania has been slow and steady. This is made possible by the availability of solar power equipment from international suppliers and distributors. 

Top Major Seaports & Logistics in Lithuania

Its proximity to the Baltic Sea means that there are many ports serving Lithuania for the logistics and trade activity. The following ports serve as access points in the transport of solar power equipment:

  • Klaipeda,
  • Vilnius,
  • Kaunas, 
  • Panevezys.

Power Optimizers used for below projects in Lithuania

No Projects Found

Power Optimizers

What are Power Optimizers for Solar Inverters?

Power optimizers are additional devices used in Solar Power generation to convert DC to DC (that’s right, not a typo, DC to DC). Power optimizers tune the performance of individual panels in the Solar power plant. 

Optimizers are required because the photoelectric effect does not produce the same energy in all the panels equally. Factors like the shading of panels due to clouds and dust can result in non-uniform distribution of power.

What are the types of Power Optimizers for Solar Inverters?

Module-level Power Optimizer: Power optimizers at each module level optimize the energy distribution to negate the effect of peculiar conditions.

Sometimes the panels don’t operate at the optimal power efficiency. In that case, the module measures the maximum power point tracking. MPPT helps to optimize the DC characteristics to get the maximum possible power output.

In Solar Power plants, the panels get connected in series. Therefore the reduced output from a few panels can lead to the reduced power output power of the whole system. 

Sometimes up to 50% of power is lost. Power optimizers become critical for not only optimizing the output DC power. But also save the system from power loss of up to half of the capacity.

How do the Power Optimizers for Solar Plant work?

Large Solar plants face an efficiency dip in power production and delivery of the power to the load. Solar Inverters convert DC to AC for the consumers. 

The DC input to the inverters is not consistent without an optimizer. Power optimizers use maximum power point tracking to make the DC power output from panels optimal.

This optimal DC power is fed to the Solar Inverters to get the efficient flow of current at optimal levels. Smaller DC voltage is hard to convert into AC voltage. Power Optimizers are necessary, especially for big Solar power plants.

What are some top brands of Power Optimizers for Solar Inverters?

SolarEdge produces high quality PV modules for Power Optimization in the Solar Inverters.

Latest technology in Power optimizers is presented by the following brands.

  • Alencon
  • Tigo
  • APsystems
  • SunSepc