Wind Turbine Fatigue Load Analysis for Derating Control Strategies Aimed at Grid Balancing

被引:0
|
作者
Oudich, Younes [1 ]
Feghaly, Anthony [1 ]
Kinnaert, Michel [1 ]
机构
[1] Univ Libre Bruxelles, Brussels, Belgium
来源
IFAC PAPERSONLINE | 2023年 / 56卷 / 02期
关键词
Power reserve; Derating strategies; Damage equivalent load; Control design; Power and energy systems;
D O I
10.1016/j.ifacol.2023.10.1505
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
With the exponential growth of wind energy worldwide, wind power plant owners are eager to participate in grid balancing, in order to compete with traditional power plant owners. In this way, they take part in frequency control which notably amounts to reacting to grid faults by an adequate injection of power. The latter calls for power reserve. For wind farms, this is achieved by derating methods which consist in extracting from the wind less power than the available power, in order to be able to increase the produced power when needed. The objective of this paper is to compare two wind turbine (WT) derating methods in terms of lifetime damage equivalent load (DEL). The first strategy is based on a modification of the generator torque set point to achieve derating, while keeping the standard pitch angle control. The second strategy achieves derating by pitch control while keeping the standard tip speed ratio set point. Both strategies were simulated in OpenFAST under various wind conditions covering all the WT operating regions. Focusing on having a constant power reserve, the simulation results on a single WT show that the pitch-based strategy is the best, among the two considered ones, when it comes to derating while reducing lifetime DEL.
引用
收藏
页码:3504 / 3509
页数:6
相关论文
共 50 条
  • [21] Direct PR individual pitch control for wind turbine fatigue load mitigation
    Li H.
    Yang C.
    Hu Y.
    Li Y.
    Liang Y.
    Ouyang H.
    1600, Electric Power Automation Equipment Press (36): : 79 - 85
  • [22] Innovative adaptive pitch control for small wind turbine fatigue load reduction
    Hatami, Arash
    Moetakef-Imani, Behnam
    MECHATRONICS, 2016, 40 : 137 - 145
  • [23] On LiDAR-assisted wind turbine retrofit control and fatigue load reductions
    Lio, Wai Hou
    Meng, Fanzhong
    Larsen, Gunner Chr
    SCIENCE OF MAKING TORQUE FROM WIND, TORQUE 2022, 2022, 2265
  • [24] Representation of fatigue for wind turbine control
    Barradas-Berglind, J. J.
    Wisniewski, Rafael
    WIND ENERGY, 2016, 19 (12) : 2189 - 2203
  • [25] Design of Individual Pitch Control and Fatigue Analysis of Wind Turbine
    Jeon, Gyeong Eon
    No, Tae Soo
    Kim, Guk Sun
    TRANSACTIONS OF THE KOREAN SOCIETY OF MECHANICAL ENGINEERS A, 2014, 38 (01) : 1 - 9
  • [26] A fatigue approach to wind turbine control
    Hammerum, K.
    Brath, P.
    Poulsen, N. K.
    SCIENCE OF MAKING TORQUE FROM WIND, 2007, 75
  • [27] Analysis of Load Balancing Techniques in Grid
    Venkatesan, R.
    Solomi, M. Blessy Rathna
    COMPUTATIONAL INTELLIGENCE AND INFORMATION TECHNOLOGY, 2011, 250 : 147 - +
  • [28] Wind turbine control for load reduction
    Bossanyi, EA
    WIND ENERGY, 2003, 6 (03) : 229 - 244
  • [29] Control and Power Balancing of an Off-Grid Wind Turbine With Co-Located Electrolyzer
    Timmers, Victor
    Egea-Alvarez, Agusti
    Gkountaras, Aris
    Xu, Lie
    IEEE TRANSACTIONS ON SUSTAINABLE ENERGY, 2024, 15 (04) : 2349 - 2360
  • [30] Delamination failure analysis of wind turbine blades based on equivalent fatigue load
    Li, Hui
    Xin, Wen
    Xu, Bofeng
    Bao, Hongbing
    OCEAN ENGINEERING, 2024, 310