Government incentives and decreasing costs in renewable energy technology have sparked growing public interest. This surge in renewable energy, particularly solar power, is enhancing load-point reliability but is also disrupting established utility grid consumption patterns. This shift poses new challenges in maintaining a steadiness between electricity demand and supply requirements due to the variability introduced by increased renewable energy production. The utility grid in India faces major hurdles, notably the unpredictability of solar energy and generation forecasts. The global and Indian markets have witnessed a significant uptick in consumers connecting to utility grid-connected photovoltaic solar generation in recent years. This research concentrates on microgrid as a possible way to ease the impact of solar variations and stabilize the electric system. A novel optimal scheduling simulation model is introduced to alleviate utility grid-connected solar variations. The efficacy of this approach is demonstrated through numerical calculations using MATLAB software.

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Leveraging of Microgrid for Reduction of Utility Grid-Connected Solar Energy Fluctuations

  • Prakruti Shah,
  • Niraj Patel

摘要

Government incentives and decreasing costs in renewable energy technology have sparked growing public interest. This surge in renewable energy, particularly solar power, is enhancing load-point reliability but is also disrupting established utility grid consumption patterns. This shift poses new challenges in maintaining a steadiness between electricity demand and supply requirements due to the variability introduced by increased renewable energy production. The utility grid in India faces major hurdles, notably the unpredictability of solar energy and generation forecasts. The global and Indian markets have witnessed a significant uptick in consumers connecting to utility grid-connected photovoltaic solar generation in recent years. This research concentrates on microgrid as a possible way to ease the impact of solar variations and stabilize the electric system. A novel optimal scheduling simulation model is introduced to alleviate utility grid-connected solar variations. The efficacy of this approach is demonstrated through numerical calculations using MATLAB software.