Supercapacitor energy storage systems for lighting systems with combined power supply

Modern continuous lighting systems use powerful high-performance LEDs as light sources and an important task is to begin using alternative renewable energy sources for their power supply (including during the day). The simplest of the renewable energy sources is photovoltaic solar energy converter....

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Main Authors: Demyd Pekur, Yuriy Kolomzarov, Vitaliy Kostylyov, Viktor Sorokin, Vasyl Kornaga, Roman Korkishko, Yurii Nikolaenko
Format: Article
Language:English
Published: Politehperiodika 2021-03-01
Series:Tekhnologiya i Konstruirovanie v Elektronnoi Apparature
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Online Access:https://tkea.com.ua/index.php/journal/article/view/80
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author Demyd Pekur
Yuriy Kolomzarov
Vitaliy Kostylyov
Viktor Sorokin
Vasyl Kornaga
Roman Korkishko
Yurii Nikolaenko
author_facet Demyd Pekur
Yuriy Kolomzarov
Vitaliy Kostylyov
Viktor Sorokin
Vasyl Kornaga
Roman Korkishko
Yurii Nikolaenko
author_sort Demyd Pekur
collection DOAJ
description Modern continuous lighting systems use powerful high-performance LEDs as light sources and an important task is to begin using alternative renewable energy sources for their power supply (including during the day). The simplest of the renewable energy sources is photovoltaic solar energy converter. However, solar photovoltaic generation depends significantly on many factors — geographical location, time of day, state of the atmosphere, time of year and the like. In addition, photovoltaic generation depends on the weather conditions and cloudiness, which makes it unstable and prone to change drastically (by an order of magnitude) during daylight hours. Therefore, an important element of the power system based on renewable energy sources is the system of accumulation of generated energy. The method of power stabilization using supercapacitors for systems with a significant change in power generation in the electrical power system is analyzed. The paper offers design principles of the power supply systems for powerful LEDs with supercapacitor energy storage devices intended to make the use of energy from sources with variable generation more efficient. The systems with supercapacitor-based drives, which allow to ensure stable operation of the lighting system when the power supply from an alternative source is absent or reduced, provide high safety and reliability, and have a significantly longer service life than battery-based energy storage systems.
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publisher Politehperiodika
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series Tekhnologiya i Konstruirovanie v Elektronnoi Apparature
spelling doaj-art-bb0c8f91fd53499aa023f8c2d0ace7de2025-08-20T02:16:29ZengPolitehperiodikaTekhnologiya i Konstruirovanie v Elektronnoi Apparature2225-58182309-99922021-03-011–23910.15222/TKEA2021.1-2.0380Supercapacitor energy storage systems for lighting systems with combined power supplyDemyd Pekur0Yuriy Kolomzarov1Vitaliy Kostylyov2Viktor Sorokin3Vasyl Kornaga4Roman Korkishko5Yurii Nikolaenko6V. Lashkaryov Institute of Semiconductor Physics, NAS of UkraineV. Lashkaryov Institute of Semiconductor Physics, NAS of UkraineV. Lashkaryov Institute of Semiconductor Physics, NAS of UkraineV. Lashkaryov Institute of Semiconductor Physics, NAS of UkraineV. Lashkaryov Institute of Semiconductor Physics, NAS of UkraineV. Lashkaryov Institute of Semiconductor Physics, NAS of UkraineIgor Sikorsky Kyiv Polytechnic InstituteModern continuous lighting systems use powerful high-performance LEDs as light sources and an important task is to begin using alternative renewable energy sources for their power supply (including during the day). The simplest of the renewable energy sources is photovoltaic solar energy converter. However, solar photovoltaic generation depends significantly on many factors — geographical location, time of day, state of the atmosphere, time of year and the like. In addition, photovoltaic generation depends on the weather conditions and cloudiness, which makes it unstable and prone to change drastically (by an order of magnitude) during daylight hours. Therefore, an important element of the power system based on renewable energy sources is the system of accumulation of generated energy. The method of power stabilization using supercapacitors for systems with a significant change in power generation in the electrical power system is analyzed. The paper offers design principles of the power supply systems for powerful LEDs with supercapacitor energy storage devices intended to make the use of energy from sources with variable generation more efficient. The systems with supercapacitor-based drives, which allow to ensure stable operation of the lighting system when the power supply from an alternative source is absent or reduced, provide high safety and reliability, and have a significantly longer service life than battery-based energy storage systems.https://tkea.com.ua/index.php/journal/article/view/80lighting systemssupercapacitorsenergy storage devicesphotoconverters of solar energy
spellingShingle Demyd Pekur
Yuriy Kolomzarov
Vitaliy Kostylyov
Viktor Sorokin
Vasyl Kornaga
Roman Korkishko
Yurii Nikolaenko
Supercapacitor energy storage systems for lighting systems with combined power supply
Tekhnologiya i Konstruirovanie v Elektronnoi Apparature
lighting systems
supercapacitors
energy storage devices
photoconverters of solar energy
title Supercapacitor energy storage systems for lighting systems with combined power supply
title_full Supercapacitor energy storage systems for lighting systems with combined power supply
title_fullStr Supercapacitor energy storage systems for lighting systems with combined power supply
title_full_unstemmed Supercapacitor energy storage systems for lighting systems with combined power supply
title_short Supercapacitor energy storage systems for lighting systems with combined power supply
title_sort supercapacitor energy storage systems for lighting systems with combined power supply
topic lighting systems
supercapacitors
energy storage devices
photoconverters of solar energy
url https://tkea.com.ua/index.php/journal/article/view/80
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AT yuriykolomzarov supercapacitorenergystoragesystemsforlightingsystemswithcombinedpowersupply
AT vitaliykostylyov supercapacitorenergystoragesystemsforlightingsystemswithcombinedpowersupply
AT viktorsorokin supercapacitorenergystoragesystemsforlightingsystemswithcombinedpowersupply
AT vasylkornaga supercapacitorenergystoragesystemsforlightingsystemswithcombinedpowersupply
AT romankorkishko supercapacitorenergystoragesystemsforlightingsystemswithcombinedpowersupply
AT yuriinikolaenko supercapacitorenergystoragesystemsforlightingsystemswithcombinedpowersupply