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Sampled data automatic generation control with superconducting magnetic energy storage in power systems
95
Citations
9
References
1997
Year
Power EngineeringEngineeringEnergy EfficiencyPower Electronics ConverterElectric Power ConversionPower ElectronicsDiscrete State-space ModelRefrigerationSystems EngineeringMagnetic Energy StoragePower System ControlThyristor ConverterEnergy ControlPower SystemsElectrical EngineeringEnergy Storage SystemPower System DynamicSmart GridEnergy ManagementGovernor Deadband Nonlinearity
A discrete state-space model of a two-area interconnected power system with reheat steam turbine, governor deadband nonlinearity and superconducting magnetic energy storage is developed in this paper. The effect of a small-capacity superconducting magnetic energy storage (SMES) system is studied in relation to supplying sudden power requirements of real power load. The feasibility of using an IGBT power converter instead of a thyristor converter as a power conditioning system with the SMES is studied. Time domain simulation results are also presented which show the improvement of transient response with SMES.
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