{"id":1175,"date":"2016-06-30T15:54:55","date_gmt":"2016-06-30T15:54:55","guid":{"rendered":"https:\/\/reuniwatt.com\/en\/?p=1175"},"modified":"2025-03-05T12:25:14","modified_gmt":"2025-03-05T11:25:14","slug":"storage-a-solution-to-the-variability-of-renewable-energy-sources","status":"publish","type":"post","link":"https:\/\/reuniwatt.com\/en\/industry-news\/storage-a-solution-to-the-variability-of-renewable-energy-sources\/","title":{"rendered":"Storage, a solution to the variability of renewable energy sources"},"content":{"rendered":"
The energy revolution is underway and is supported by the increasing development of renewable energy sources (RES). Indeed, in 2015, the use of green energy accounted for <\/em>134 GW<\/em><\/strong> of additional power capacity, more than 50% of the overall development. Solar and wind installations represented the majority of this new generation. These two energies are called variable. A phenomenon that affects RE operators and which can result in an under- or overproduction with respect to the expected production by grid players. This represents a huge problem for the management of the energy sector. Thus, we are gradually evolving towards electric production facilities coupled with appropriate storage.<\/em><\/p>\n What is energy storage?<\/strong><\/p>\n Energy storage is the action of placing an amount of energy in a dedicated location in order to enable its later use. There are 5 sorts of storage:<\/p>\n Each device is distinguished by a storage power and a discharge time, which, depending on their costs, can be used according to different needs: transportation, portable system, storage of energy\u2026<\/p>\n The value of storage for the production of photovoltaic energy<\/strong><\/p>\n Photovoltaics (PV) energy is based on the collected solar energy, which is a duality in the resource level between massive potential variability and difficulty to manage. This variability is observed at a primary level, at night, with a total absence of electricity production, and at a secondary level, during the passage of a cloud, as its shadow may produce a loss of up to 70% of the production of the affected PV panel.<\/p>\n This is where the interest of the storage appears:<\/p>\n We can see here that the energy stored and supplied by the battery can stabilize electricity production sent over the network (red line).<\/p>\n Solar tends to favour electrochemical storage<\/p>\n In the sector related to solar PV, electrochemical storage is the most suitable solution to answer the operators\u2019 needs: the system has a storage of several hours with power ranging from ten kilowatts to several megawatts.<\/p>\n Electrochemical storage systems, more commonly known as batteries, were based on different materials and operating systems. Nowadays, the most efficient and viable in the storage of solar energy market is the Lithium-ion battery.<\/p>\n This system has great advantages over alternative solutions:<\/p>\n However, the high cost of lithium-ion batteries remains an obstacle to their globalized use.<\/p>\n For individual use, the best market price is $ 3,000<\/strong> (for 7 kWh), \u20ac 380 kWh. This is a system of moderate size (1300x860x180mm) for a weight of 97 kg that can store solar energy for a standard home.<\/p>\n On a larger scale (several MW power plant), despite a considerable decrease in the cost of storage batteries, the investment is therefore with a similar price to the plant itself (\u20ac 250 MWh).<\/p>\n However, it is expected that in future years the cost inherent to this technology will continue to decline. This will allow more popularized use of storage <\/strong>batteries in the solar PV sector production.<\/p>\n This energy hybridization will also be supported by new technologies such as smart energy management devices, also called EMS (Energy Management Systems), or the acquisition of information tools, such as energy forecasting<\/strong>.<\/p>\n\n
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