Impact of Storage Technologies upon Power System Losses

The paper describes the main characteristics of storage technologies. The most important storage technologies are the batteries, hydrogen, pumped hydro, flywheels, compressed air, super-capacitors and superconducting magnetic devices. The storage technologies can be classified based on the function...

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Main Author: DULAU Lucian Ioan
Format: Article
Language:English
Published: Editura Universităţii din Oradea 2015-05-01
Series:Journal of Electrical and Electronics Engineering
Subjects:
Online Access:http://electroinf.uoradea.ro/images/articles/CERCETARE/Reviste/JEEE/JEEE_V8_N1_MAY_2015/DULAU_JEEEv8nr1may2015.pdf
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author DULAU Lucian Ioan
author_facet DULAU Lucian Ioan
author_sort DULAU Lucian Ioan
collection DOAJ
description The paper describes the main characteristics of storage technologies. The most important storage technologies are the batteries, hydrogen, pumped hydro, flywheels, compressed air, super-capacitors and superconducting magnetic devices. The storage technologies can be classified based on the function principle into electrochemical, mechanical and electromagnetic devices. The storage systems can also be classified based on their capacity to store power into short and long term devices. A power flow analysis is performed for the situation with and without a storage unit. The storage unit is inserted into the IEEE 14 bus test system.
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2067-2128
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spelling doaj.art-0547a83288b442d39d16cb6e4632d6ee2022-12-22T01:22:47ZengEditura Universităţii din OradeaJournal of Electrical and Electronics Engineering1844-60352067-21282015-05-0181912Impact of Storage Technologies upon Power System LossesDULAU Lucian Ioan0Technical University of Cluj-Napoca, Romania, Department of Automation, Faculty of Automation and Computer ScienceThe paper describes the main characteristics of storage technologies. The most important storage technologies are the batteries, hydrogen, pumped hydro, flywheels, compressed air, super-capacitors and superconducting magnetic devices. The storage technologies can be classified based on the function principle into electrochemical, mechanical and electromagnetic devices. The storage systems can also be classified based on their capacity to store power into short and long term devices. A power flow analysis is performed for the situation with and without a storage unit. The storage unit is inserted into the IEEE 14 bus test system.http://electroinf.uoradea.ro/images/articles/CERCETARE/Reviste/JEEE/JEEE_V8_N1_MAY_2015/DULAU_JEEEv8nr1may2015.pdfstorage technologiesdistributed generationdistributed energy resourcesrenewable energy sourcespower flow analysis
spellingShingle DULAU Lucian Ioan
Impact of Storage Technologies upon Power System Losses
Journal of Electrical and Electronics Engineering
storage technologies
distributed generation
distributed energy resources
renewable energy sources
power flow analysis
title Impact of Storage Technologies upon Power System Losses
title_full Impact of Storage Technologies upon Power System Losses
title_fullStr Impact of Storage Technologies upon Power System Losses
title_full_unstemmed Impact of Storage Technologies upon Power System Losses
title_short Impact of Storage Technologies upon Power System Losses
title_sort impact of storage technologies upon power system losses
topic storage technologies
distributed generation
distributed energy resources
renewable energy sources
power flow analysis
url http://electroinf.uoradea.ro/images/articles/CERCETARE/Reviste/JEEE/JEEE_V8_N1_MAY_2015/DULAU_JEEEv8nr1may2015.pdf
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