TY - JOUR
T1 - Multi-machine power systems stabilizing control using output feedback excitation system
AU - Numajiri, T.
AU - Shirai, G.
AU - Yokoyama, R.
AU - Machi, S.
AU - Fujita, G.
N1 - Publisher Copyright:
Copyright © 2003 IFAC.
PY - 2003
Y1 - 2003
N2 - Electric network is now confronted with market deregulation or overload. Power System Stabilizer (PSS) is used to enhance capacity limits and improve transient stability, and it also make important role in the renewed system. This paper proposes design of excitation control with Fletcher-Powell method, which is non-linear mathematical optimization technique to realize output feedback control. The design procedure and the effectiveness are discussed through 5-machine system models. Scheme of decomposing control matrices for the large network is also discussed for successful application of the method.
AB - Electric network is now confronted with market deregulation or overload. Power System Stabilizer (PSS) is used to enhance capacity limits and improve transient stability, and it also make important role in the renewed system. This paper proposes design of excitation control with Fletcher-Powell method, which is non-linear mathematical optimization technique to realize output feedback control. The design procedure and the effectiveness are discussed through 5-machine system models. Scheme of decomposing control matrices for the large network is also discussed for successful application of the method.
KW - Distributed control
KW - Excitation control
KW - Multi-machine power system
KW - Output feedback method
KW - Power system stabilizer
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U2 - 10.1016/S14746670(17)34462-2
DO - 10.1016/S14746670(17)34462-2
M3 - Conference article
AN - SCOPUS:84858301014
SN - 1474-6670
VL - 36
SP - 169
EP - 173
JO - IFAC Proceedings Volumes (IFAC-PapersOnline)
JF - IFAC Proceedings Volumes (IFAC-PapersOnline)
IS - 20
T2 - 5th IFAC Symposium on Power Plants and Power Systems Control 2003
Y2 - 15 September 2003 through 19 September 2003
ER -