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Damping controller design for power system oscillations using global signals
503
Citations
10
References
1996
Year
Input SignalElectrical EngineeringNew DesignEngineeringSmart GridPower System OscillationsSystems EngineeringPower System ControlPower System DynamicPower ElectronicsGrid StabilityVibration ControlFrequency ControlPower System TransientPower SystemsStability
This paper describes a new power system stabilizer (PSS) design for damping power system oscillations focusing on interarea modes. The input to the PSS consists of two signals. The first signal is mainly to damp the local mode in the area where PSS is located using the generator rotor speed as an input signal. The second is an additional global signal for damping interarea modes. Two global signals are suggested; the tie-line active power and speed difference signals. The choice of PSS location, input signals and tuning is based on modal analysis and frequency response information. These two signals can also be used to enhance damping of interarea modes using SVC located in the middle of the transmission circuit connecting the two oscillating groups. The effectiveness and robustness of the new design are tested on a 19-generator system having characteristics and structure similar to the Western North American grid.
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