Probabilistic OPF Model for Unbalanced Three-Phase Electrical Distribution Systems Considering Robust Constraints
Abstract
This paper proposes a probabilistic optimal power flow (POPF) for unbalanced three-phase electrical distribution systems considering robust constraints. Wind velocity, solar irradiation, and demands are considered as exogenous random variables with dissimilar probability distribution functions. The proposed two-stage POPF model determines the optimal generation dispatch that minimizes the average production cost while satisfying probabilistically robust constraints. The robustness of the solution is adjusted through a parameter involving the first two moments of the random state variables. The
- Publication:
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IEEE Transactions on Power Systems
- Pub Date:
- September 2019
- DOI:
- Bibcode:
- 2019ITPSy..34.3443G
- Keywords:
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- Probabilistic optimal power flow;
- probabilistically robust constraints;
- unbalanced three-phase electrical distribution systems;
- $2m+1$ point estimate method