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Energy Management System with Stability Constraints for Stand-alone Autonomous Microgrid
38
Citations
8
References
2007
Year
Unknown Venue
Distributed Energy SystemEngineeringDc MicrogridsSmart GridEnergy ManagementHydrogen-based MicrogridsDroop GainsSystems EngineeringDistributed Energy GenerationStability ConstraintsPower System ControlMicrogridsEnergy Management SystemEnergy ControlGenerator Outputs
This paper presents an Energy Management System (EMS) for a stand-alone droop-controlled microgrid, which adjusts generator outputs to minimize fuel consumption and also ensures stable operation. It has previously been shown that droop gains have a significant effect on stability in such microgrids. Approximate relationships between these parameters and stability margins are therefore identified, using qualitative analysis and small-signal techniques. This allows them to be selected to ensure stability. Optimized generator outputs are then implemented in real-time by the EMS, through adjustments to droop characteristics within this constraint. Experimental results from a laboratory-sized microgrid confirm the EMS function.
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