IEEE Transactions on Industrial Informatics · 2012 · 216 citations · 21 references
Wind Power UncertaintyEngineeringWind Power GenerationSmart GridEnergy ManagementFirefly AlgorithmEnergy OptimizationIntelligent OptimizationCarbon TaxEnergy ForecastingPower System OptimizationSystems EngineeringWeibull DistributionEnergy OperationEconomic Dispatch
In this paper, a computational framework for integrating wind power uncertainty and carbon tax in economic dispatch (ED) model is developed. The probability of stochastic wind power based on nonlinear wind power curve and Weibull distribution is included in the model. In order to solve the revised dispatch strategy, quantum-inspired particle swarm optimization (QPSO) is also adopted, which shows stronger search ability and quicker convergence speed. The dispatch model is tested on a modified IEEE benchmark system involving six thermal units and two wind farms using the real wind speed data obtained from two meteorological stations in Australia.
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