DocumentCode
1503617
Title
Large-scale active-load modulation for angle stability improvement
Author
Kamwa, I. ; Grondin, R. ; Asber, D. ; Gingras, J.P. ; Trudel, G.
Author_Institution
Inst. de Recherche, Hydro-Quebec, Varennes, Que., Canada
Volume
14
Issue
2
fYear
1999
fDate
5/1/1999 12:00:00 AM
Firstpage
582
Lastpage
590
Abstract
Analyses, operating experience and simulations of a large power system are used to demonstrate that active-load modulation can improve the system´s dynamic performance to a large extent, with just a fraction of the base load available for control. At a time when the cost effectiveness of FACTS devices for damping interarea oscillations is constantly being questioned, it is natural to look to active-load modulation as a potential alternative method of insuring grid reliability. In developing the case, it was found that continuously modulating load stabilizers need to be fed with global signals for full efficiency. Although more difficult to design, implementation of a discontinuous control scheme shows good prospects, especially with regard to decentralization and robustness against communication delays
Keywords
control system analysis; control system synthesis; decentralised control; flexible AC transmission systems; load regulation; power system reliability; power system stability; power transmission control; robust control; FACTS; angle stability improvement; control design; control simulation; cost effectiveness; decentralization; discontinuous control scheme; grid reliability assurance; interarea oscillations damping; large-scale active-load modulation; power system dynamic performance improvement; robustness; Analytical models; Costs; Large-scale systems; Performance analysis; Power system analysis computing; Power system control; Power system dynamics; Power system simulation; Power system stability; Power systems;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/59.761884
Filename
761884
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