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Energy-Saving Systems Using Photovoltaic Modules

Energy-Saving Systems Using Photovoltaic Modules
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Author(s): Pavel Valentinovich Tikhonov (Federal Scientific Agroengineering Center VIM, Russia), Vladimir Aleksandrovich Mayorov (Federal Scientific Agroengineering Center VIM, Russia)and Konstantin Sergeevich Morenko (Federal Scientific Agroengineering Center VIM, Russia)
Copyright: 2020
Pages: 22
Source title: Handbook of Research on Smart Computing for Renewable Energy and Agro-Engineering
Source Author(s)/Editor(s): Valeriy Kharchenko (Federal Scientific Agroengineering Center VIM, Russia)and Pandian Vasant (Universiti Teknologi Petronas, Malaysia)
DOI: 10.4018/978-1-7998-1216-6.ch018

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Abstract

The chapter presents the results of the development of two systems. The first is a photovoltaic system parallel to the power supply network of LED lamps. The algorithms of the system operation for both working and emergency lighting are shown. The basic operating modes of the system are considered taking into account the criterion of the minimum cost of electricity generated. These modes provide the most complete use of solar energy in the working day with minimal additional costs, allowing the consumer to save on electricity and increase the reliability of the emergency lighting system. The second system is a solar photovoltaic module built into a standard double-glazed window sash size 730x700 (mm), which is designed to charge a block of lithium-ion batteries with a capacity of 6.8 Ah with an output voltage of 5.25 V, the energy of which can be used to power any device having a USB 2.0 connector. The results of calculation of the required peak photovoltaic power of the module are presented; the technology of its sealing is described.

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