Control, Stability, and Energy Management Strategies in AC/DC Hybrid Microgrids for Enhanced Renewable Energy Integration
Description :
AC/DC hybrid microgrids have gained recently great interests from researchers working in the design and control of power systems. Due to the diversity of renewable sources (PV panels, wind generators, biomass, fuel cells, tidal, etc.), storage devices and loads, hybrid microgrids offer better alternative compared to totally AC or DC grids in terms of connectivity, stability and energy efficiency. This project will focus on the design and control of multiport power electronic devices to ensure an optimized energy exchange between the AC and the DC parts of the microgrid, in order to preserve a high stability rate in presence of disturbances at both sides minimized power losses for the energy transition, and reduced greenhouse gas emissions. The converter employs a data-driven control through artificial intelligence techniques.
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