![]() ![]() The microgrid is delivered ready to operate and only needs to be plugged in. A transformer modifies the output voltage according to the local specifications. ![]() The mtu batteries deliver almost 2,000 kW and boast a capacity of 1,095 ampere hours. These can store a total of almost 1,000 kWh – almost 14 times the capacity of a Model X Tesla. The battery bank comprises 154 modules with 3,388 lithium-ion cells. ![]() That depends on the customer's current preference –- whether he wishes to generate power cheaply, produce green power using renewable energies, or simply optimize power consumption.Īnother key component of mtu microgrids is its mtu EnergyPack – the battery bank that it designed and built in-house. This is a smart energy management system which calculates which sources of energy should be harnessed and when for delivering directly to the consumer or storing in the battery. The brain center of the microgrid is its control system. They can also be deployed for parallel power generation, meaning that they either deliver eco-friendly on-site power to an industrial enterprise or local community, or feed the power they generate into the public grid. Microgrids can be used as completely autonomous entities for generating on-site power at remote locations that do not have any access at all to a public power grid – a mine operation, for example, or an island community. Microgrid demonstrator in Friedrichshafen All elements are connected within the microgrid and the intelligent energy management system ensures that energy is optimally harnessed. Microgrids meet both these challenges by smartly integrating different sources of electric power using batteries and an energy management system. Another challenge is finding ways of balancing out the weather-induced fluctuations that renewable energies involve. mtu recently forged a partnership with Berlin-based start-up Qinous and is now providing turnkey microgrids complete with battery and control system.Īs the potential for using renewable energy grows, so does the challenge of storing the surplus energy that photovoltaic cells and wind turbines produce in order to use it as and when required. Their unique capability is to provide a reliable source of on-site power in locations – be they towns, remote areas, or industrial sites – that either have no access to or do not want to solely rely on the public power grid. They combine the advantages of cheap, renewable energies with the stability of conventional power generation systems such as co-generation modules and diesel gensets. Microgrids will figure strongly in our energy future. ![]()
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