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- W2571035967 abstract "This paper focuses on distribution systems featuring renewable energy sources and energy storage devices, and develops an optimal power flow (OPF) approach to optimize the system operation in spite of forecasting errors. The proposed method builds on a chance-constrained multi-period AC OPF formulation, where probabilistic constraints are utilized to enforce voltage regulation with a prescribed probability. To enable a computationally affordable solution approach, a convex reformulation of the OPF task is obtained by resorting to i) suitable linear approximations of the power flow equations, and ii) convex approximations of the chance constraints. Particularly, the approximate chance constraints provide conservative bounds that hold for arbitrary distributions of the forecasting errors. An adaptive optimization strategy is then obtained by embedding the proposed OPF task into a model predictive control framework." @default.
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- W2571035967 date "2016-12-01" @default.
- W2571035967 modified "2023-10-16" @default.
- W2571035967 title "Optimal power flow for distribution systems under uncertain forecasts" @default.
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- W2571035967 doi "https://doi.org/10.1109/cdc.2016.7799428" @default.
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