Robust Transient Stability Constrained Optimal Power Flow with Power Flow Routers Considering Renewable Uncertainties
Abstract
This paper proposes a robust transient stability constrained optimal power flow problem that addresses renewable uncertainties by the coordination of generation re-dispatch and power flow router (PFR) tuning.PFR refers to a general type of network-side controller that enlarges the feasible region of the OPF problem. The coordination between network-side and generator-side control in the proposed model is more general than the traditional methods which focus on generation dispatch only. An offline-online solution framework is developed to solve the problem efficiently. Under this framework the original problem is significantly simplified, so that we only need to solve a low-dimensional deterministic problem at the online stage to achieve real-time implementation with a high robustness level. The proposed method is verified on the modified New England 39-bus system. Numerical results demonstrate that the proposed method is efficient and shows good performance on economy and robustness.
Cite
@article{arxiv.2006.00506,
title = {Robust Transient Stability Constrained Optimal Power Flow with Power Flow Routers Considering Renewable Uncertainties},
author = {Tianlun Chen and Albert Y. S. Lam and Yue Song and David J. Hill},
journal= {arXiv preprint arXiv:2006.00506},
year = {2020}
}
Comments
10 pages, 8 figures