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    Solar

Top Power Optimizers Manufacturers Suppliers in Australia

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Power Optimizers used for below projects in Australia

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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

Manufacturers

In the simplest terms, manufacturing is the process of producing actual goods or items/products through the use of raw materials, human labour, use of machinery, tools and other processes such as chemical formulation. This process usually starts with product designing and raw material selection, turning them into an actual product output. 

Solar Products Manufacturers and Factories

In terms of solar, manufacturing encompasses the fabrication or production of materials across the solar market chain. The most common product being manufactured by solar companies are the solar photovoltaic (PV) panels, which are made with several subcomponents such as solar wafers, cells, glass, back sheets, and frames. Before a solar panel comes into life, it will undergo a lot of processes, from designing, modelling, choosing what raw materials to use and then assembling them all to make the final product.

More Than Just Solar Panels

Aside from the solar panels, solar companies have many other manufactured products that are required to make solar energy systems work smoothly, like solar inverters, batteries, combiner boxes, and racking and tracking structures.

Having a solar manufacturing sector makes a big difference in supplying affordable solar energy in different areas. Aside from maintaining the rising domestic and global demand for cleaner and renewable energy, they also help the economy grow, particularly the solar industry. If you are in search of a reliable solar manufacturing company, checking out our solar outsourcing company, SolarFeeds, would help you get easy access to reliable information, news, data and a list of solar manufacturers that can help you with solar products.

Australia

Australia’s Solar Energy

The utilization of energy created by the heat and light of the sun and converting it into electricity is commonly known as Solar Power Energy. It was in the 1860’s when solar power technologies was first developed, arising from the distress of industrialist that the current coal, oil and fossil fuels supply would become scarce and limited. Thus, becoming more costly for individual households to afford.

The growing concern has then led to the re-evaluation and re-assessment of the international energy policies and regulations. According to the 2018 World Economy Outlook published by the Organization for Economic Co-operation and Development and the International Energy Agency, the global demand for energy increased by 2.1% in 2017 with a 398 GW of solar PV installed around the world, and, meeting the 2% of global electricity demand.

In which, the rate of installations are influenced by changes, alterations and updates in the policy mechanisms supporting such technology. Nonetheless, this trend is expected to significantly increase in numbers by another 25% by the year 2040.

As one of the fastest developing countries, the land down under has relied greatly on solar power energy as their preferred energy source for decades now. However, it was only then in the year 2015 when the age of solar power technology in Australia underwent a rapid growth. The increasing cost of energy resources like fossil fuels, has led to a significant number of households that are turning into solar energy.

The emergence of government funded incentive programs for the incorporation of domestic and commercial solar power utilization also proliferated. Through the years, solar-powered technology has become Australia’s optimal energy source.

Geographically speaking, the Australian continent is known to have the highest solar radiation per square meter of any continent with an average of 58 million petajoules (PJ) of solar radiation per year, which is approximately 10,000 times larger than the country’s total energy consumption. This has helped increase Australia’s Gross Domestic Product (GDP) to $275 million for every petajoule of energy consumed.

To date, there are 2.15 million or 21% of Australian households are recorded to have Solar Photovoltaic (also known as solar PV) with a combined capacity of over 12.9 gigawatts installed on their rooftops that directly converts sunlight into electricity using a semiconductor cell or solar PV cell. This type of solar power technology is the most common and widely used in households.