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A Practical Approach to HVDC System Control for Damping Subsynchronous Oscillation Using the Novel Eigenvalue Analysis Program
45
Citations
12
References
2007
Year
Supplementary ControlPositive Damping TorqueElectrical EngineeringEngineeringPractical ApproachPower Electronics ConverterHvdc System ControlPower System ControlDamping Subsynchronous OscillationPower ElectronicsGrid StabilityPower System DynamicVibration ControlFrequency ControlPower System TransientStability
This paper presents a practical approach for supplementary control of high voltage direct current (HVDC) system to damp subsynchronous oscillation (SSO) involving HVDC converters and turbine-generator shaft systems. A novel eigenvalue analysis (NEA) program, HVDC system modeling to consider steady-state and dynamic conditions in a combined ac/dc system, and an appropriate control scheme have been utilized. The design method proposed facilitates the design of a subsynchronous oscillation damping controller (SODC) to provide positive damping torque for the dominant torsional mode in combined ac/dc systems. The suggested SODC design method has been applied to an ac/dc system to verify its practicality using the EMTDC simulation program.
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