The paper deals with the 400 kV-50 Hz interconnection line (Int.Ga.Co) between Congo and Gabon. The line represents a section of a backbone extending from Angola to Cameroun. A preliminary analysis of the operation of Int. Ga. Co is presented, aimed at assessing the maximum active power transfer capacity. Static (N-l) security is at first considered; moreover, angle stability is checked simulating electromechanical transients caused by severe but credible contingencies. Results show that the Int. Ga. Co transfer limit depends on the power flow direction and is dictated by angle stability.
Planning studies for the Gabon-Congo interconnector. Static and dynamic transfer limits / Gatta, F. M.; Geri, A.; Lauria, S.; Maccioni, M.; Ngari, A.; Galantino, S.; Iwandza, J. M.. - (2018), pp. 1-6. (Intervento presentato al convegno 2018 IEEE International conference on environment and electrical engineering and 2018 IEEE Industrial and commercial power systems Europe, EEEIC/ I and CPS Europe 2018 tenutosi a Palermo; Italy) [10.1109/EEEIC.2018.8493833].
Planning studies for the Gabon-Congo interconnector. Static and dynamic transfer limits
Gatta F. M.Membro del Collaboration Group
;Geri A.Membro del Collaboration Group
;Lauria S.Membro del Collaboration Group
;MacCioni M.Membro del Collaboration Group
;
2018
Abstract
The paper deals with the 400 kV-50 Hz interconnection line (Int.Ga.Co) between Congo and Gabon. The line represents a section of a backbone extending from Angola to Cameroun. A preliminary analysis of the operation of Int. Ga. Co is presented, aimed at assessing the maximum active power transfer capacity. Static (N-l) security is at first considered; moreover, angle stability is checked simulating electromechanical transients caused by severe but credible contingencies. Results show that the Int. Ga. Co transfer limit depends on the power flow direction and is dictated by angle stability.File | Dimensione | Formato | |
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Maccioni_Planning studies_2018.pdf
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