Publication | Closed Access
Reserve Requirements for Wind Power Integration: A Scenario-Based Stochastic Programming Framework
570
Citations
24
References
2011
Year
Mathematical ProgrammingDistributed Energy SystemUnit CommitmentEngineeringWind Power GenerationSmart GridEnergy ManagementEnergy OptimizationWind Power IntegrationEnergy PolicyDual Decomposition AlgorithmPower System OptimizationSystems EngineeringEnergy PlanningComputer ScienceReserve RequirementsWeighted Scenarios
We present a two-stage stochastic programming model for committing reserves in systems with large amounts of wind power. We describe wind power generation in terms of a representative set of appropriately weighted scenarios, and we present a dual decomposition algorithm for solving the resulting stochastic program. We test our scenario generation methodology on a model of California consisting of 122 generators, and we show that the stochastic programming unit commitment policy outperforms common reserve rules.
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