With the increasing demand for clean and sustainable energy solutions, the perception of micro grids has gained significant attention in recent years. Among various types of micro grids, direct current (DC) micro grids have emerged as a promising alternative to conventional AC grids, offering numerous advantages in terms of efficiency, reliability, and resilience. The AC grid segment is used to simulate various fault scenarios and analyze the performance of micro grid during fault occurrences. The response of the PV, wind sources, and energy storage system is evaluated, and the behavior of the micro grid under fault conditions is examined. In order to maximize power output, the PV system and wind farm are designed and simulated in this work using a MATLAB/Simulink simulation model. It is clear from the simulations that the PV panels and wind turbines in the DC micro grid can produce a combined power output of about 10 kW, demonstrating their ability to offer a steady and dependable power source.

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Design and Operation of DC Micro Grid for Integration of Hybrid Renewable Power

  • Vibhuti Rehalia,
  • Natasha Mahajan,
  • Naveen Kumar Sharma

摘要

With the increasing demand for clean and sustainable energy solutions, the perception of micro grids has gained significant attention in recent years. Among various types of micro grids, direct current (DC) micro grids have emerged as a promising alternative to conventional AC grids, offering numerous advantages in terms of efficiency, reliability, and resilience. The AC grid segment is used to simulate various fault scenarios and analyze the performance of micro grid during fault occurrences. The response of the PV, wind sources, and energy storage system is evaluated, and the behavior of the micro grid under fault conditions is examined. In order to maximize power output, the PV system and wind farm are designed and simulated in this work using a MATLAB/Simulink simulation model. It is clear from the simulations that the PV panels and wind turbines in the DC micro grid can produce a combined power output of about 10 kW, demonstrating their ability to offer a steady and dependable power source.