TY - JOUR
T1 - Flexible transmission expansion planning for integrating wind power based on wind power distribution characteristics
AU - Wang, Jianxue
AU - Wang, Ruogu
AU - Zeng, Pingliang
AU - You, Shutang
AU - Li, Yunhao
AU - Zhang, Yao
N1 - Publisher Copyright:
© 2015, The Korean Institute of Electrical Engineers.
PY - 2015/5/1
Y1 - 2015/5/1
N2 - Traditional transmission planning usually caters for rated wind power output. Due to the low occurrence probability of nominal capacity of wind power and huge investment in transmission, these planning methods will leads to low utilization rates of transmission lines and poor economic efficiency. This paper provides a novel transmission expansion planning method for integrating largescale wind power. The wind power distribution characteristics of large-scale wind power output and its impact on transmission planning are analyzed. Based on the wind power distribution characteristics, this paper proposes a flexible and economic transmission planning model which saves substantial transmission investment through spilling a small amount of peak output of wind power. A methodology based on Benders decomposition is used to solve the model. The applicability and effectiveness of the model and algorithm are verified through a numerical case.
AB - Traditional transmission planning usually caters for rated wind power output. Due to the low occurrence probability of nominal capacity of wind power and huge investment in transmission, these planning methods will leads to low utilization rates of transmission lines and poor economic efficiency. This paper provides a novel transmission expansion planning method for integrating largescale wind power. The wind power distribution characteristics of large-scale wind power output and its impact on transmission planning are analyzed. Based on the wind power distribution characteristics, this paper proposes a flexible and economic transmission planning model which saves substantial transmission investment through spilling a small amount of peak output of wind power. A methodology based on Benders decomposition is used to solve the model. The applicability and effectiveness of the model and algorithm are verified through a numerical case.
KW - Benders decomposition
KW - Large-scale wind power
KW - Transmission planning
KW - Wind power distribution characteristics
UR - https://www.scopus.com/pages/publications/84927670323
U2 - 10.5370/JEET.2015.10.3.709
DO - 10.5370/JEET.2015.10.3.709
M3 - 文章
AN - SCOPUS:84927670323
SN - 1975-0102
VL - 10
SP - 709
EP - 718
JO - Journal of Electrical Engineering and Technology
JF - Journal of Electrical Engineering and Technology
IS - 3
ER -