DocumentCode :
1084315
Title :
Complete matrix formulation of fault-position method for voltage-dip characterisation
Author :
Carpinelli, G. ; Caramia, P. ; Di Perna, C. ; Varilone, P. ; Verde, P.
Author_Institution :
Dipt. di Ingegneria Elettrica, Univ. degli studi di Napoli Federico
Volume :
1
Issue :
1
fYear :
2007
fDate :
1/1/2007 12:00:00 AM
Firstpage :
56
Lastpage :
64
Abstract :
The method of fault position is useful for characterising power-system performance in the presence of voltage dips due to faults. It is based on short-circuit simulations repeated for all the system nodes and for many points along the system lines: fault voltages that are below a preset threshold are the required voltage dips. These dips are stored in so-called dip matrices which contain only the dips in all the system nodes when faults occur at points along the lines. The paper proposes a new compact analytical formulation of dip matrices for balanced and unbalanced faults in terms of bidimensional vector relations and for site- and system-voltage dip indexes. Compact formulations are very useful tools when several sensitivity analyses have to be conducted to estimate variation of site- and system-voltage dip indexes in relation to possible reinforcement and/or compensation devices. Graphical presentation of dip matrices is also proposed as a valuable tool to ascertain the critical area for system performance. Numerical applications to an actual transmission system are presented to demonstrate the easy applicability of the model.
Keywords :
matrix algebra; power supply quality; power system faults; power transmission faults; sensitivity analysis; analytical formulation; balanced faults; bidimensional vector relations; complete matrix formulation; dip matrices; fault-position method; power quality; power-system performance; sensitivity analyses; short-circuit simulations; site-voltage dip indexes; system-voltage dip indexes; transmission system; unbalanced faults; voltage-dip characterisation;
fLanguage :
English
Journal_Title :
Generation, Transmission & Distribution, IET
Publisher :
iet
ISSN :
1751-8687
Type :
jour
DOI :
10.1049/iet-gtd:20050544
Filename :
4082368
Link To Document :
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