TY - JOUR
T1 - Development of control design scheme using nonlinear analysis - PSS parameter design effective for suppression of oscillatory instability
AU - Amano, Hiroyuki
AU - Inoue, Toshio
PY - 2007
Y1 - 2007
N2 - Phenomena in power systems tend to exhibit higher nonlinearity, because efficient operation accompanies severer power transfer. In such cases, there might exist some limitation to the use of conventional linear control design scheme due to the nonlinearity. As for consideration to the nonlinearity, we have developed a nonlinear analysis method based on normal form theory. In this paper, we develop a new control design scheme based on the nonlinear analysis method. The developed method is effective in a case when oscillatory instability occurs. In the developed method, the parameters of control devices are adjusted so as to enlarge the stability limit against the oscillatory instability, unless each eigenvalue exceed its allowable threshold. We verify the effectiveness of the developed method in the IEEJ 10-machine System Model by applying to PSS (Power System Stabilizer), We show that the power transfer limit increases by a few percent.
AB - Phenomena in power systems tend to exhibit higher nonlinearity, because efficient operation accompanies severer power transfer. In such cases, there might exist some limitation to the use of conventional linear control design scheme due to the nonlinearity. As for consideration to the nonlinearity, we have developed a nonlinear analysis method based on normal form theory. In this paper, we develop a new control design scheme based on the nonlinear analysis method. The developed method is effective in a case when oscillatory instability occurs. In the developed method, the parameters of control devices are adjusted so as to enlarge the stability limit against the oscillatory instability, unless each eigenvalue exceed its allowable threshold. We verify the effectiveness of the developed method in the IEEJ 10-machine System Model by applying to PSS (Power System Stabilizer), We show that the power transfer limit increases by a few percent.
KW - Control design scheme
KW - Nonlinearity
KW - Normal form theory
KW - Oscillatory instability
KW - Power system
KW - Rotor angle stability
UR - http://www.scopus.com/inward/record.url?scp=34249981765&partnerID=8YFLogxK
M3 - 学術論文
AN - SCOPUS:34249981765
SN - 0385-4213
VL - 127
SP - 747-755+9
JO - IEEJ Transactions on Power and Energy
JF - IEEJ Transactions on Power and Energy
IS - 6
ER -