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Robust damping controller design in power systems with superconducting magnetic energy storage devices
68
Citations
16
References
2000
Year
EngineeringPower Electronics ConverterPower ElectronicsStabilityController DesignSystems EngineeringPower System ControlGrid StabilityPower System TransientPower SystemsElectrical EngineeringDc MicrogridsComputer EngineeringDistributed Control SystemPower System DynamicLarge Power SystemSmart GridEnergy ManagementDecentralized DesignDamping ControllersVibration Control
The decentralized design of low-order robust damping controllers is presented based on a weighted and normalized eigenvalue-distance minimization method (WNEDM) employing several superconducting magnetic energy storage (SMES) devices. These controllers are aimed at enhancing the damping of multiple inter-area modes in a large power system. This paper describes a comprehensive and systematic way of designing these controllers. Nonlinear simulations further verify the robustness of the damping controllers for various operating conditions.
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