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Optimal sizing integrating power management for a microgrid with storage

Abstract : The paper presents an optimal design process for a microgrid with an industrial load associated to a photovoltaic power plant and a storage unit based on high speed flywheel. The power management is simplified with a fast linear programming algorithm which allows simulating the whole system over a long period of time integrating both operating and sizing loops. The overall design procedure is led by the Efficient Global Optimization that interpolates the objective function with a kriging technique. Then, the optimal sizes for both storage and PV production are found in a reduced number of objective function evaluations.
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Submitted on : Monday, February 22, 2016 - 5:37:09 PM
Last modification on : Wednesday, June 10, 2020 - 5:28:07 PM
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  • HAL Id : hal-01277577, version 1
  • OATAO : 11995

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Rémy Rigo-Mariani, Bruno Sareni, Xavier Roboam. Optimal sizing integrating power management for a microgrid with storage. 13th International Workshop on Optimization and Inverse Problems in Electromagnetism, Sep 2014, Delft, Netherlands. pp. 8-9. ⟨hal-01277577⟩

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