Optimal Power Flow Analysis of IEEE 14 System with Distributed Generators
This paper describes the mathematical model for the optimal power flow analysis of the IEEE 14 bus system. In the IEEE 14 bus system were connected two distributed generators (DGs): a hydro generator and a photovoltaic power plant. The two objective functions which are minimized, are the generati...
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doaj-a314b6d6fe1f4f4bba3b8055ab8f36e62020-11-24T22:45:30ZengEditura Universităţii din OradeaJournal of Electrical and Electronics Engineering1844-60352067-21282016-05-0191912Optimal Power Flow Analysis of IEEE 14 System with Distributed GeneratorsDULĂU Lucian Ioan0“Petru Maior” University of Tîrgu Mureş, Romania, Department of Electrical and Computer Engineering, Faculty of EngineeringThis paper describes the mathematical model for the optimal power flow analysis of the IEEE 14 bus system. In the IEEE 14 bus system were connected two distributed generators (DGs): a hydro generator and a photovoltaic power plant. The two objective functions which are minimized, are the generation costs and the total power losses of the system, while there are satisfied equality and inequality constraints. The optimal power flow analysis will be performed for the steady-state condition of the system and for the whole day, for two cases: the DGs are connected to the system and the DGs are not connected to the system. http://electroinf.uoradea.ro/images/articles/CERCETARE/Reviste/JEEE/JEEE_V9_N1_MAY_2016/Dulau_JEEE_Vol_9_Nr_1_MAY_2016.pdfoptimal power flowIEEE 14 systemgeneration costspower losses |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
DULĂU Lucian Ioan |
spellingShingle |
DULĂU Lucian Ioan Optimal Power Flow Analysis of IEEE 14 System with Distributed Generators Journal of Electrical and Electronics Engineering optimal power flow IEEE 14 system generation costs power losses |
author_facet |
DULĂU Lucian Ioan |
author_sort |
DULĂU Lucian Ioan |
title |
Optimal Power Flow Analysis of IEEE 14 System with Distributed Generators |
title_short |
Optimal Power Flow Analysis of IEEE 14 System with Distributed Generators |
title_full |
Optimal Power Flow Analysis of IEEE 14 System with Distributed Generators |
title_fullStr |
Optimal Power Flow Analysis of IEEE 14 System with Distributed Generators |
title_full_unstemmed |
Optimal Power Flow Analysis of IEEE 14 System with Distributed Generators |
title_sort |
optimal power flow analysis of ieee 14 system with distributed generators |
publisher |
Editura Universităţii din Oradea |
series |
Journal of Electrical and Electronics Engineering |
issn |
1844-6035 2067-2128 |
publishDate |
2016-05-01 |
description |
This paper describes the mathematical model for the optimal power flow analysis of the IEEE 14 bus system. In the IEEE 14 bus system were connected two distributed generators (DGs): a hydro generator and a photovoltaic power plant. The two objective functions which are minimized, are the generation costs and the total power losses of the system, while there are satisfied equality and inequality constraints. The optimal power flow analysis will be performed for the steady-state condition of the system and for the whole day, for two cases: the DGs are connected to the system and the DGs are not connected to the system. |
topic |
optimal power flow IEEE 14 system generation costs power losses |
url |
http://electroinf.uoradea.ro/images/articles/CERCETARE/Reviste/JEEE/JEEE_V9_N1_MAY_2016/Dulau_JEEE_Vol_9_Nr_1_MAY_2016.pdf |
work_keys_str_mv |
AT dulaulucianioan optimalpowerflowanalysisofieee14systemwithdistributedgenerators |
_version_ |
1725688191484166144 |