Title :
Robust Look-Ahead Power Dispatch With Adjustable Conservativeness Accommodating Significant Wind Power Integration
Author :
Zhigang Li ; Wenchuan Wu ; Boming Zhang ; Bin Wang
Author_Institution :
Dept. of Electr. Eng., Tsinghua Univ., Beijing, China
Abstract :
Robust look-ahead power dispatch is an effective and secure approach to account for uncertainties in wind power. Based on the robust look-ahead power dispatch model proposed in our previous work, in this paper, we focus on coping with adjustable uncertainty sets to reduce the conservativeness of robust dispatch (RD). Robust look-ahead power dispatch with adjustable uncertainty sets is formulated using robust optimization (RO) and is transformed into biconvex programming. Several strategies exploiting different levels of uncertainty information are developed to adjust the conservativeness by varying the desired confidence level. Monte Carlo simulations are carried out to compare the performance of the proposed approaches with another popular strategy. Test results show that the proposed method is effective in reducing the conservativeness of RD and ensuring system security with controllable risk. Experiments on large-scale benchmark systems show the scalability of the proposed method.
Keywords :
Monte Carlo methods; convex programming; power generation dispatch; power system security; wind power plants; Monte Carlo simulations; adjustable conservativeness; adjustable uncertainty sets; biconvex programming; robust look-ahead power dispatch model; robust optimization; system security; uncertainty information; wind power integration; Abstracts; Mathematical model; Robustness; Security; Uncertainty; Wind farms; Wind power generation; Conservativeness; look-ahead dispatch; prediction intervals (PIs); robust optimization (RO); uncertainty set; wind power;
Journal_Title :
Sustainable Energy, IEEE Transactions on
DOI :
10.1109/TSTE.2015.2413778