Simultaneous optimization of SMES coil size and control parameters for robust power system stabilization

dc.contributor.authorNgamroo, Issarachai
dc.date.accessioned2026-08-06T10:02:23Z
dc.date.available2026-08-06T10:02:23Z
dc.date.issued2011-06-01
dc.description.abstractAs the coil size is the heart of superconducting magnetic energy storage (SMES), the simultaneous optimization of coil size and control parameters of SMES for robust power system stabilization is proposed. The structure of active and reactive power controllers of SMES is the practical first-order lead/lag compensator. To handle system uncertainties such as various generating and loading conditions, unpredictable network structures etc., the multiplicative uncertainty model is embedded in the system modeling. As a result, the optimization problem of SMES coil size and controller parameters based on the enhancement of system damping and robust stability margin against system uncertainties can be formulated. Solving the problem by a particle swarm optimization, both optimal coil size and controller parameters are obtained simultaneously and automatically. Simulation study in the West Japan six-area interconnected power system with two SMES units confirms the superior robustness and damping performance of the proposed SMES controller with an optimal coil size under various situations in comparison with the conventional SMES controller. © 2011 IEEE.
dc.identifier.citationIEEE Transactions on Applied Superconductivity, 21(3 PART 2), 1358-1361, 2011
dc.identifier.doi10.1109/TASC.2010.2098011
dc.identifier.issn10518223
dc.identifier.other2-s2.0-79957919768
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/3650
dc.sourceIEEE Transactions on Applied Superconductivity
dc.subjectPower system stabilization
dc.subjectRobust control
dc.subjectSuperconducting magnetic energy storage
dc.subjectSystem uncertainties
dc.titleSimultaneous optimization of SMES coil size and control parameters for robust power system stabilization
dc.typeArticle

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