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Mobile Solar Power Plant “Pyramid” with a Kinetic Energy Storage

  • Natalia Savchenko,
  • Andrii Tretiak,
  • Oksana Dovgalyuk,
  • Dmytro Danylchenko,
  • Tatyana Syromyatnikova

摘要

The purpose of the work is to research the energy efficiency of the developed solar power plant “Pyramid” depending on its design features, namely its execution in the form of a polyhedral geometric figure, inside of which a kinetic energy storage device is installed. First of all, the paper analyses the factors of influence on the energy efficiency of photovoltaic panels in the mobile power plant when they are located on the sides of the pyramid in the process of their operation. As theoretical methods of research of interrelation of factors of influence on quality and quantity of generated electric power by solar power plant were chosen methods of analysis on the basis of Ishikawa diagram and Paretto principle. Also, mathematical modelling of the processes of electricity generation by the Pyramid solar power station with regard to the increase in the capacity of the installation due to the application of an energy conservation system based on a kinetic energy storage device was carried out. The developed mathematical model of the solar power plant has indicators, maximally approached to the real conditions of operation taking into account the most significant factors that affect the energy efficiency of the solar power plant, namely, climatic environmental conditions, technical parameters of the design and operating conditions. Mass introduction of the proposed mobile solar power station “Pyramid” is a promising and energy-efficient solution for reliable and high-quality power supply to low-power consumers of both direct and alternating current, and also allows to solve the issues of energy independence and economic feasibility.