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Stochastic Energy Scheduling in Microgrids With Intermittent Renewable Energy Resources

IEEE Transactions on Smart Grid · 2013 · Vol. 5(4) · pp. 1876–1883
Wencong SuJianhui WangJae Hyung Roh

Abstract

Renewable energy resources such as wind and solar are an important component of a microgrid. However, the inherent intermittency and variability of such resources complicates microgrid operations. Meanwhile, more controllable loads (e.g., plug-in electric vehicles), distributed generators (e.g., micro gas turbines and diesel generators), and distributed energy storage devices (e.g., battery banks) are being integrated into the microgrid operation. To address the operational challenges associated with these technologies and energy resources, this paper formulates a stochastic problem for microgrid energy scheduling. The proposed problem formulation minimizes the expected operational cost of the microgrid and power losses while accommodating the intermittent nature of renewable energy resources. Case studies are performed on a modified IEEE 37-bus test feeder. The simulation results demonstrate the effectiveness and accuracy of the proposed stochastic microgrid energy scheduling model.

Microgrid Control and OptimizationSmart Grid Energy ManagementElectric Vehicles and InfrastructureMicrogridRenewable energyIntermittencyEnergy storageDistributed generationWind powerScheduling (production processes)Computer scienceAutomotive engineeringEngineering
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References
A Survey on the Electrification of Transportation in a Smart Grid Environment
IEEE Transactions on Industrial Informatics · 2011 · 803 citations
Robust Unit Commitment With Wind Power and Pumped Storage Hydro
IEEE Transactions on Power Systems · 2011 · 948 citations
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