Publication | Closed Access
Design of a model reference adaptive stabilizer for the exciter and governor loops of power generators
40
Citations
20
References
1990
Year
EngineeringGovernor LoopsControl SystemsStabilityGovernor ControlSystems EngineeringPower GeneratorsPower System ControlController TuningGrid StabilityPower SystemsPower System AnalysisElectrical EngineeringComputer EngineeringDistributed Control SystemPower System StabilizersPower System DynamicFrequency ControlSmart GridAdaptive Control LawVibration Control
The authors present a decentralized model reference adaptive control (DMRAC) scheme for the design of power system stabilizers (PSS) and a means for coordinating the generating unit excitation and governor control loops. In the excitation and governor control loops. In the proposed scheme, the state variables of the generating unit (GU) are to track those of an explicitly specified reference system which is designed to have desirable performance characteristics. The adaptive control law for coordinating the exciter-governor stabilizer signals is derived from a Lyapunov energy function, and thus assures system stability. Decentralized regulation and tracking tests on simulated one-machine infinite bus system show significant improvement in system performance.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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