DocumentCode
2368140
Title
Enhancing the utilization of the matlala and glencowie 22kV radial feeders by interconnecting them using a phase shifting transformer
Author
Makhathini, Duduzile ; Mbuli, Nhlanhla ; Sithole, Silence ; Pretorius, JHC
Author_Institution
Eskom Holdings SoC Ltd., Rosherville, South Africa
fYear
2012
fDate
18-25 May 2012
Firstpage
844
Lastpage
848
Abstract
The lines that supply customers are usually of radial topology, and their backbones are built at medium voltages (usually 11kV and 22kV). The loading of the main backbones of such lines are influenced by the total size, in MVA, of the customers connected to the lines. These lines generally are not connected to other lines. Sometimes, interconnectors between such lines are created so that if one line experiences constraints such as violation limits for voltage and thermal loadings, some of the load can be relocated to the other, nearby feeder so that constraints on the first feeder can be eased. Here, a consideration of connecting these types of radial feeders using a phase shifting transformer is made. In this paper, it is shown that if one feeder is experiencing load-flow constraints, such as undervoltage or thermal overload, a phase shifting transformer can be used to restrict power flowing in this feeder, forcing some of the power required by its load to be channeled via the backbone of the healthy, radial feeder. In this way, constraints on the unhealthy feeder can be eased.
Keywords
load flow; power system interconnection; power transformers; power utilisation; Glencowie radial feeder interconnection; Matlala radial feeder interconnection; load-flow constraint; phase shifting transformer; power utilization enhancement; radial topology; thermal overloading; undervoltage; voltage 11 kV; voltage 22 kV; voltage loading; Load flow; Loading; Phase transformers; Power transformers; Thermal loading; Voltage control; phase shifting transformer; power flow control; voltage control;
fLanguage
English
Publisher
ieee
Conference_Titel
Environment and Electrical Engineering (EEEIC), 2012 11th International Conference on
Conference_Location
Venice
Print_ISBN
978-1-4577-1830-4
Type
conf
DOI
10.1109/EEEIC.2012.6221493
Filename
6221493
Link To Document