Title :
Robust Distribution Network Reconfiguration
Author :
Changhyeok Lee ; Cong Liu ; Mehrotra, Sanjay ; Zhaohong Bie
Author_Institution :
Energy Syst. Div., Argonne Nat. Lab., Argonne, IL, USA
Abstract :
We propose a two-stage robust optimization model for the distribution network reconfiguration problem with load uncertainty. The first-stage decision is to configure the radial distribution network and the second-stage decision is to find the optimal a/c power flow of the reconfigured network for given demand realization. We solve the two-stage robust model by using a column-and-constraint generation algorithm, where the master problem and subproblem are formulated as mixed-integer second-order cone programs. Computational results for 16, 33, 70, and 94-bus test cases are reported. We find that the configuration from the robust model does not compromise much the power loss under the nominal load scenario compared to the configuration from the deterministic model, yet it provides the reliability of the distribution system for all scenarios in the uncertainty set.
Keywords :
integer programming; load flow; power distribution reliability; column-and-constraint generation algorithm; distribution network reconfiguration problem; distribution system reliability; first-stage decision; load uncertainty; mixed-integer second-order cone programs; optimal a-c power flow; power loss; radial distribution network; second-stage decision; two-stage robust optimization model; Computational modeling; Equations; Load modeling; Mathematical model; Optimization; Robustness; Uncertainty; Distribution network; minimum loss; mixed-integer second-order cone program (MISOCP); reconfiguration; robust optimization;
Journal_Title :
Smart Grid, IEEE Transactions on
DOI :
10.1109/TSG.2014.2375160