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A bi-level approach is here proposed for the optimal control of smart grids, microgrids, virtual power plants and in general for power and energy systems that include distributed energy resources, renewables and storage devices. The upper decision level has the function of fixing the values of a certain set of parameters (reference values), to be applied at the lower decision level. On the basis of...
An approach is proposed to deal with distributed energy resources, renewables and storage devices connected to microgrids. Specifically, a multilevel architecture is introduced and evaluated for the following main purposes: to reduce the computational complexity, to deal with different decentralized microgrids, different decision makers, and multiple objectives. A two-level decision architecture based...
The increased penetration of renewable energy sources and the concept of a dynamic and highly distributed Smart Grid which can intelligently integrate production units, storage systems and connected users opened new challenges in the application of optimization techniques. In this work, a dynamic optimization problem is formulated on a power grid characterized by wind and photovoltaic production units,...
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