In the current framework, where there is environmental pollution, the depletion of fossil fuel supplies, and significant climate change all contribute to the depletion of limited alternative energy sources. The development of renewable energy sources, such as solar and wind energy, has emerged as a dependable source of renewable energy supplies. Renewable energy sources have been gaining in popularity as alternative resources. The hybridized model that produces wind power hybrid with solar electricity is the major target of this paper. The main part of the hybridized model is the solar power generating system, which uses the MPPT approach to produce a maximum output that is constant. In addition, the solar and wind power generation systems have been integrated and connected to the grid. Additionally, the output properties of the hybridized structure are analyzed, and the entire hybridized system is being constructed in MATLAB/Simulink. The simulation results show efficiency in the generation even under change in light intensity and wind speed as well.

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Hybrid Power System Simulation and Modeling for PV and Wind

  • N. Rama Devi,
  • D. Nagalakshmi,
  • S. Srinivasarao,
  • A. Swathi,
  • G. Vyshnavi,
  • K. Srkanth

摘要

In the current framework, where there is environmental pollution, the depletion of fossil fuel supplies, and significant climate change all contribute to the depletion of limited alternative energy sources. The development of renewable energy sources, such as solar and wind energy, has emerged as a dependable source of renewable energy supplies. Renewable energy sources have been gaining in popularity as alternative resources. The hybridized model that produces wind power hybrid with solar electricity is the major target of this paper. The main part of the hybridized model is the solar power generating system, which uses the MPPT approach to produce a maximum output that is constant. In addition, the solar and wind power generation systems have been integrated and connected to the grid. Additionally, the output properties of the hybridized structure are analyzed, and the entire hybridized system is being constructed in MATLAB/Simulink. The simulation results show efficiency in the generation even under change in light intensity and wind speed as well.