Mekonnen, Tefera; Bhandari, Ramchandra; Ramayya, Venkata:
Loss Minimization and Voltage Profile Enhancement of Distribution System with the Integration of Renewable Distributed Generation and Capacitor
In: Journal of Electrical Systems, Jg. 18 (2022), Heft 2, S. 272 - 287
2022Aufsatz / Artikel in ZeitschriftOA Gold
Fakultät für Raumentwicklung und Infrastruktursysteme » Institute for Technology and Resources Management in the Tropics and Subtropics
Titel in Englisch:
Loss Minimization and Voltage Profile Enhancement of Distribution System with the Integration of Renewable Distributed Generation and Capacitor
Autor*in:
Mekonnen, Tefera
SCOPUS
57213232279
;
Bhandari, RamchandraTH Köln
DHSB-ID
THK0002217
SCOPUS
26653950200
Sonstiges
der TH Köln zugeordnete Person
;
Ramayya, Venkata
SCOPUS
57412208300
Erscheinungsjahr:
2022
OA-Publikationsweg:
OA Gold
Scopus ID
Sprache des Textes:
Englisch
Schlagwort, Thema:
Distributed generation ; Optimal capacitor placement ; Power loss minimization ; Voltage profile improvement ; Voltage sensitivity index
Ressourcentyp:
Text
Access Rights:
Open Access
Peer Reviewed:
Peer Reviewed
Praxispartner*in:
Nein
Kategorie:
Forschung
Teil der Statistik:
Teil der Statistik

Abstract:

The continuation of load demand increment in the distribution system and its consequences on the voltage deviation and distribution system loss have a negative impact on system quality. Distributed generation (DG) and capacitor bank can be considered the m ost suitable enhancement devices for these problems if they are allocated appropriately in the distribution system. In this paper, the impacts of renewable DG and capacitor bank on power loss and voltage profile of Adama real distribution substation in Eth iopia with four scenarios of DG and capacitor interconnection are investigated. In each scenario, the performances of interconnected DG and capacitor in terms of voltage and power losses are analyzed through simulation in Electrical Transient Analyzer Prog ram (ETAP).Voltage sensitivity index (VSI) and genetic algorithm (GA) implemented in ETAP software is utilized to determine the optimal location and sizing of DG and capacitors. Results showed that a substantial reduction in active power losses and voltage profile improvement is achieved with a combination of DG and capacitor bank compared to DG and capacitor separately. The reduction of active power loss percentage is reached to 52%.The cost that is associated with power loss is minimized by 51.7 %. Also i t was found that based on the time taken for the analysis, GA technique implemented in ETAP is slightly effective than VSI variational algorithm methods for capacitor sizing.