DocumentCode :
3058811
Title :
A mixed-integer LP based network topology optimization algorithm for overload alleviation
Author :
Lobato, E. ; Echavarren, F. ; Rouco, L. ; Navarrete, M.I. ; Casanova, R. ; Löpez, G.
Author_Institution :
Sch. of Eng., Univ. Pontificia Comillas, Madrid, Spain
Volume :
2
fYear :
2003
fDate :
23-26 June 2003
Abstract :
Line switching is used in power system operation to alleviate branch overloads. This work presents a mixed-integer linear programming algorithm that determines the optimal switching strategies to remove or reduce overloads within a power system. It has been formulated as an iterative process that opens one branch in each iteration. Each iteration comprises two steps. First, the best switching candidates for each overloaded branch are identified. Then a mixed-integer linear optimization program is formulated to select the branch to be opened. The algorithm represents the network with the linear DC power flow model, where a branch reactive power flow is taken approximately into account by reducing its branch rating in proportion to the power factor. The performance of the method is illustrated with an actual scenario of the Spanish power system.
Keywords :
iterative methods; linear programming; load flow; network topology; power factor; power system security; switching transients; Spanish; iterative process; line switching; linear DC power flow model; mixed-integer linear programming; network topology; optimal switching strategies; optimization algorithm; overload alleviation; power factor; power system operation; reactive power flow; security assessment; Costs; Iterative algorithms; Load flow; Network topology; Power generation; Power system modeling; Power system security; Power systems; Reactive power; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Tech Conference Proceedings, 2003 IEEE Bologna
Print_ISBN :
0-7803-7967-5
Type :
conf
DOI :
10.1109/PTC.2003.1304279
Filename :
1304279
Link To Document :
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