Renewable energy is becoming more widespread and accessible. This has been made feasible by increased environmental awareness, combined with popular desire to reduce greenhouse gas emissions. This study proposes a grid-connected photovoltaic system. The research primary goal is to establish a comprehensive distributed energy resource system, followed by an increase in grid efficiency. The proposed system goal is to significantly reduce the usage of fossil fuels while increasing the use of renewable energy. The system will include a PV module that will be managed and optimized using a maximum power point tracking (MPPT) algorithm. A boost converter in conjunction with a single phase grid tie inverter A boost converter and a single phase grid tie inverter will be utilized to raise the output voltage and convert it to alternating current (AC). A control methodology based on the (Incremental Conductance) IC method is used to operate the PV at the MPPT point by controlling the switching of the boost converter, as well as to operate the single phase inverter and integrate it into the grid. The parameters of these controllers are optimized to produce the greatest results. This will be followed by a thorough mathematical and engineering study of the simulated outcomes. The suggested scheme's validity will be confirmed by simulation using the MATLAB software.

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Design and Execution of a 100 kW Solar System

  • Amit Dodke,
  • Jagdish Chaudhari,
  • Harshal Ghatole,
  • Rahul Argelwar,
  • Sapna Verma,
  • Rupak Lonare,
  • Amit Kharwade

摘要

Renewable energy is becoming more widespread and accessible. This has been made feasible by increased environmental awareness, combined with popular desire to reduce greenhouse gas emissions. This study proposes a grid-connected photovoltaic system. The research primary goal is to establish a comprehensive distributed energy resource system, followed by an increase in grid efficiency. The proposed system goal is to significantly reduce the usage of fossil fuels while increasing the use of renewable energy. The system will include a PV module that will be managed and optimized using a maximum power point tracking (MPPT) algorithm. A boost converter in conjunction with a single phase grid tie inverter A boost converter and a single phase grid tie inverter will be utilized to raise the output voltage and convert it to alternating current (AC). A control methodology based on the (Incremental Conductance) IC method is used to operate the PV at the MPPT point by controlling the switching of the boost converter, as well as to operate the single phase inverter and integrate it into the grid. The parameters of these controllers are optimized to produce the greatest results. This will be followed by a thorough mathematical and engineering study of the simulated outcomes. The suggested scheme's validity will be confirmed by simulation using the MATLAB software.