Hierarchical Optimization of Installed Capacity and Layout of Offshore Wind Farm Considering Market Bidding and Acceptance

被引:0
作者
Zhang J. [1 ]
Jiang Y. [1 ]
机构
[1] College of Electrical Engineering and Automation, Fuzhou University, Fuzhou, 350108, Fujian Province
来源
Dianwang Jishu/Power System Technology | 2020年 / 44卷 / 10期
基金
中国国家自然科学基金;
关键词
Electricity market; Installed capacity optimization; Investment profit of wind farm; Offshore wind farm; Wind farm layout optimization;
D O I
10.13335/j.1000-3673.pst.2019.2441
中图分类号
学科分类号
摘要
This paper proposes a hierarchical optimization method to determine the installed capacity of an offshore wind farm and the layout of the wind farm. The upper model takes the maximum annual profit of installed capacity as the goal to decide the installed capacity and layout of offshore wind farm. The obtained installed capacity and layout are transferred to the lower level as parameters. After considering the influence of wake effect, the lower layer model calculates the predicted output of the offshore wind farm with the determined layout, wind speed and direction, the output as a constraint of wind farm participating in the day ahead market bidding. Then, the day ahead market bidding model with the operating constraints is constructed. The bid winning output, marginal node price and penalty costs in real-time market due to wind power prediction error are transferred to the upper level as parameters. The optimal installed capacity and offshore wind farm layout can be obtained by solving the bi-level optimization model. The rationality and superiority of the proposed optimization method are verified by cases. © 2020, Power System Technology Press. All right reserved.
引用
收藏
页码:3837 / 3845
页数:8
相关论文
共 24 条
[1]  
Wang Xifan, Wei Xiaohui, Ning Lianhui, Et al., Integration techniques and transmission schemes for off-shore wind farms, Proceedings of the CSEE, 34, 31, pp. 5459-5466, (2014)
[2]  
Huang Lingling, Cao Jialin, Zhang Kaihua, Et al., Status and prospects on operation and maintenance of offshore wind turbines, Proceedings of the CSEE, 36, 3, pp. 729-738, (2016)
[3]  
Huang Yang, Chen Hongkun, Hui Junlong, Et al., Wind power capacity optimization considering accommodation of wind power constraints, Engineering Journal of Wuhan University, 48, 6, pp. 842-847, (2015)
[4]  
Jiang Yuewen, Chen Meisen, Hierarchical wind-power installation capacity optimization considering grid wind-power accommodation and wind-power supplier's benefit, Electric Power Automation Equipment, 37, 4, pp. 52-59, (2017)
[5]  
Zhang Xu, Luo Xianjue, Zhao Zheng, Et al., Installed capacity optimization of wind turbine generators considering maximum economic benefit of wind farm, Power System Technology, 36, 1, pp. 237-240, (2012)
[6]  
Jiang Xin, Chen Hongkun, Hui Junlong, Et al., Optimal installed capacity of wind farm considering wind power curtailment, Transactions of China Electro Technical Society, 31, 18, pp. 160-168, (2016)
[7]  
Jiang Yuewen, Chen Xiaorong, Optimization of installed capacity of wind farm with mixed multiple attribute decisions based on D-U space, Power System Technology, 43, 12, pp. 4451-4461, (2019)
[8]  
Feng Yu, He Yan, Zhu Qihao, Et al., Temporal and spatial characteristic of offshore wind resources, Tsinghua Univ (Sci&Technol), 56, 5, pp. 522-529, (2016)
[9]  
Xu Qianyao, Kang Chongqing, Zhang Ning, Et al., A discussion on offshore wind power output characteristics and its accommodation, Automation of Electric Power Systems, 35, 22, pp. 54-59, (2011)
[10]  
Zou Peng, Chen Qixin, Xia Qing, Et al., Logical analysis of electricity spot market design in foreign countries and enlightenment and policy suggestions for China, Automation of Electric Power Systems, 38, 13, pp. 18-27, (2014)