DocumentCode
1315853
Title
Overload and voltage control of power systems by line switching and generation rescheduling
Author
Quintana, V.H. ; Muller, Nicholas
Author_Institution
Dept. of Electr. Eng., Waterloo Univ., Ont., Canada
Volume
15
Issue
4
fYear
1990
Firstpage
167
Lastpage
173
Abstract
Presents of fast mathematical technique for solving security related problems in the steady-state operation of a power system. Both thermal overloads of transmission elements and nodal voltage violation problems are dealt with. In order to minimize the increase in operating costs, priority is given to the rescheduling of the network topology; however, the real and reactive power generation outputs and tap position of voltage transformers are also considered. A new network topology is determined by a set of distribution factors that relate the violating constraints to the transmission elements. The remaining control variables are determined by sensitivity analysis techniques. The violating constraints are reduced in steps so that, at any point during the computation, the most recent operating point is better than the previous one. The proposed algorithm has been implemented and tested on 24- and 118-bus power systems.
Keywords
load (electric); overvoltage protection; power system control; 118-bus system; 24-bus system; algorithm; control variables; distribution factors; fast mathematical technique; generation rescheduling; line switching; network topology; nodal voltage violation problems; overload control; power systems; reactive power generation outputs; real power generation output; security related problems; sensitivity analysis; steady-state operation; tap position; thermal overloads; transmission elements; voltage control; voltage transformers; Convergence; Equations; Load flow; Mathematical model; Reactive power; Switches; Voltage control;
fLanguage
English
Journal_Title
Electrical and Computer Engineering, Canadian Journal of
Publisher
ieee
ISSN
0840-8688
Type
jour
DOI
10.1109/CJECE.1990.6591513
Filename
6591513
Link To Document