All about the course
Design of PV stations using provision

Design of PV stations using provision

The aim of the course is to teach students the professional skills and knowledge needed to design solar power plants using different types of support.

The course aims to reveal theoretical aspects and practical knowledge of PV plant design, including capacity determination, equipment selection, parameter optimization and other aspects. Students will also learn about different types of support such as batteries, inverters, charge controllers, etc. and learn how to use them to optimize the operation of solar power plants.

imgAbout the course

Designing photovoltaic plants is a complex and multifaceted process that requires knowledge of electrical engineering, physics, mathematics and engineering. During design, you need to determine the number of solar panels, their size and location, the type of inverter that converts the direct current received from the solar panels into alternating current, and also calculate the maximum power that the station can provide.

The course "Designing PV plants using provisioning" is intended for those who wish to explore the possibilities of using solar energy and ensuring the efficient operation of photovoltaic plants. The course includes the following topics:

  • Choosing the optimal support technology for PV stations.
  • Designing support systems to ensure uninterrupted operation of PV stations.
  • Development of the architecture of support systems for PV stations.

As part of the course, students will learn about the various technologies and equipment used to build PV plants, including solar panels, inverters and other components. They also examine the technical characteristics and parameters that need to be taken into account when designing and installing plants, such as power, efficiency, conversion factor and electrical energy.

As part of the course, students will learn about the various technologies and equipment used to build PV plants, including solar panels, inverters and other components. They also examine the technical characteristics and parameters that need to be taken into account when designing and installing plants, such as power, efficiency, conversion factor and electrical energy.