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Two stage affinely adjustable robust optimal scheduling for AC/DC hybrid distribution network based on source–grid–load–storage coordination

Zhichun Yang, Fan Yang, Xiaobing Liao, Wei Hu, Huaidong Min, Lei Yang, Lei Su, Yu Shen

2022Energy Reports14 citationsDOIOpen Access PDF

Abstract

Aiming at the uncertain optimization problem of AC/DC hybrid distribution network under the coordination of source, grid load and storage, an AC/DC hybrid distribution network operation scheme based on two stage affinely adjustable robust optimization was proposed in this paper. Firstly, the controllable model of distribution generation (DG), the battery energy storage model with cycle life degradation and the ZIP load model were considered, and the optimization model of AC/DC hybrid distribution network economic operation was constructed. Then the ellipsoid set was used to describe the uncertainty of DG output, and the linear decision-making mechanism of decision variables and uncertainty variables of DG output in the optimization model was formed by combining linear affine strategy, Finally, the robust optimization model of AC/DC hybrid distribution network was transformed into a deterministic mixed integer second-order cone programming model by dual transformation. The effectiveness and advantages of the affinely adjustable robust optimization method proposed in this paper were compared and verified in the two modified IEEE bus system.

Topics & Concepts

Mathematical optimizationRobust optimizationScheduling (production processes)Control theory (sociology)Linear programmingOptimization problemComputer scienceDual (grammatical number)Energy storageGridInteger programmingDistributed generationAffine transformationEngineeringMathematicsPower (physics)Control (management)Electrical engineeringRenewable energyPure mathematicsQuantum mechanicsPhysicsLiteratureGeometryArtArtificial intelligenceOptimal Power Flow DistributionSmart Grid Energy ManagementMicrogrid Control and Optimization
Two stage affinely adjustable robust optimal scheduling for AC/DC hybrid distribution network based on source–grid–load–storage coordination | Litcius