IEEE Transactions on Power Delivery · 2005 · 1.1K citations · 10 references
EngineeringPower ElectronicsDistribution SubsystemGrid NetworkMicro-grid Autonomous OperationSystems EngineeringPower System ControlGrid StabilityElectrical EngineeringDc MicrogridsComputer EngineeringFault EventsElectric Grid IntegrationMicrogridsPower System ProtectionGrid ServiceSmart GridEnergy ManagementIslanding TransientsGrid Optimization
A micro‑grid comprises two distributed generation units: a conventional synchronous machine and a power‑electronic converter‑interfaced unit. The study examines how preplanned switching and fault events cause islanding and micro‑grid formation. The converter is equipped with independent real and reactive power control, and the system is simulated in PSCAD/EMTDC to evaluate islanding transients. Results show that the converter’s control strategy stabilizes the micro‑grid and preserves voltage quality during islanding, confirming the technical viability of micro‑grids with electronically‑interfaced DG units.
This paper investigates (i) preplanned switching events and (ii) fault events that lead to islanding of a distribution subsystem and formation of a micro-grid. The micro-grid includes two distributed generation (DG) units. One unit is a conventional rotating synchronous machine and the other is interfaced through a power electronic converter. The interface converter of the latter unit is equipped with independent real and reactive power control to minimize islanding transients and maintain both angle stability and voltage quality within the micro-grid. The studies are performed based on a digital computer simulation approach using the PSCAD/EMTDC software package. The studies show that an appropriate control strategy for the power electronically interfaced DG unit can ensure stability of the micro-grid and maintain voltage quality at designated buses, even during islanding transients. This paper concludes that presence of an electronically-interfaced DG unit makes the concept of micro-grid a technically viable option for further investigations.
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Electrical power systems quality
M. McGranaghan · Choice Reviews Online · 1996 · 2.6K citations · Full text