A fast decoupled static state-estimator for electric power systems

A new algorithm is described to solve the static, time-invariant weighted least-square state-estimation problem for large-scale electric power systems. The solution is obtained through P-θ and Q-V decoupling and alternately iterating the active and reactive equations using fixed, simplified submatri...

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Veröffentlicht in:IEEE transactions on power apparatus and systems 1976-01, Vol.95 (1), p.208-215
Hauptverfasser: Horisberger, H.P., Richard, J.C., Rossier, C.
Format: Artikel
Sprache:eng
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Zusammenfassung:A new algorithm is described to solve the static, time-invariant weighted least-square state-estimation problem for large-scale electric power systems. The solution is obtained through P-θ and Q-V decoupling and alternately iterating the active and reactive equations using fixed, simplified submatrices of the information matrix. Thus, a much faster algorithm is obtained yielding the exact solution and requiring little computer storage. The new method is compared with the basic "Weighted-least-square" and the "Line-Only" algorithms on a practical HV network.
ISSN:0018-9510
2995-6323
DOI:10.1109/T-PAS.1976.32093