Publication | Open Access
Optimal Real-Time Operation Strategy for Microgrid: An ADP-Based Stochastic Nonlinear Optimization Approach
151
Citations
40
References
2018
Year
Mathematical ProgrammingEngineeringPower Grid OperationOperations ResearchEnergy OptimizationSystems EngineeringEnergy ControlEnergy Demand ManagementElectrical EngineeringDc MicrogridsComputer EngineeringPower System OptimizationUnit CommitmentSmart GridEnergy ManagementApproximate Dynamic ProgrammingReal-time OperationGrid OptimizationReal-time Decision
This paper proposes an approximate dynamic programming (ADP) based algorithm for the real-time operation of the microgrid under uncertainties. First, the optimal operation of the microgrid is formulated as a stochastic mixed-integer nonlinear programming (MINLP) problem, combining the ac power flow and the detailed operational character of the battery. For this NP-hard problem, the proposed ADP based energy management algorithm decomposes the original multitime periods MINLP problem into single-time period nonlinear programming problems. Thus, the sequential decisions can be made by solving Bellman's equation. Historical data is utilized offline to improve the optimality of the real-time decision, and the dependency on the forecast information is reduced. Comparative numerical simulations with several existing methods demonstrate the effectiveness and efficiency of the proposed algorithm.
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