Research on DFIG-ES System to Enhance the Fast-Frequency Response Capability of Wind Farms

被引:11
作者
Tu, Sijia [1 ]
Zhang, Bingda [1 ]
Jin, Xianglong [1 ]
机构
[1] Tianjin Univ, Minist Educ, Key Lab Smart Grid, Tianjin 300072, Peoples R China
基金
中国国家自然科学基金;
关键词
DFIG; ES; virtual inertia control; capacity allocation; fuzzy logic controller; POWER-CONTROL; SUPPORT;
D O I
10.3390/en12183581
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
With the increasing penetration of wind power generation, the frequency regulation burden on conventional synchronous generators has become heavier, as the rotor speed of doubly-fed induction generator (DFIG) is decoupled with the system frequency. As the frequency regulation capability of wind farms is an urgent appeal, the inertia control of DFIG has been studied by many researchers and the energy storage (ES) system has been installed in wind farms to respond to frequency deviation with doubly-fed induction generators (DFIGs). In view of the high allocation and maintenance cost of the ES system, the capacity allocation scheme of the ES system-especially for fast-frequency response-is proposed in this paper. The capacity allocation principle was to make the wind farm possess the same potential inertial energy as that of synchronous generators set with equal rated power. After the capacity of the ES system was defined, the coordinated control strategy of the DFIG-ES system with consideration of wind speed was proposed in order to improve the frequency nadir during fast-frequency response. The overall power reference of the DFIG-ES system was calculated on the basis of the frequency response characteristic of synchronous generators. In particular, once the power reference of DFIG was determined, a novel virtual inertia control method of DFIG was put forward to release rotational kinetic energy and produce power surge by means of continuously modifying the proportional coefficient of maximum power point tracking (MPPT) control. During the deceleration period, the power reference smoothly decreased with the rotor speed until it reached the MPPT curve, wherein the rotor speed could rapidly recover by virtue of wind power so that the secondary frequency drop could be avoided. Afterwards, a fuzzy logic controller (FLC) was designed to distribute output power between the DFIG and ES system according to the rotor speed of DFIG and SoC of ES; thus the scheme enabled the DFIG-ES system to respond to frequency deviation in most cases while preventing the secondary frequency drop and prolonging the service life of the DFIG-ES system. Finally, the test results, which were based on the simulation system on MATLAB/Simulink software, verified the effectiveness of the proposed control strategy by comparison with other control methods and verified the rationality of the designed fuzzy logic controller and proposed capacity allocation scheme of the ES system.
引用
收藏
页数:20
相关论文
共 33 条
  • [1] Modification of DFIG's Active Power Control Loop for Speed Control Enhancement and Inertial Frequency Response
    Ashouri-Zadeh, Alireza
    Toulabi, Mohammadreza
    Bahrami, Shahab
    Ranjbar, Ali Mohammad
    [J]. IEEE TRANSACTIONS ON SUSTAINABLE ENERGY, 2017, 8 (04) : 1772 - 1782
  • [2] LEARNING AND TUNING FUZZY-LOGIC CONTROLLERS THROUGH REINFORCEMENTS
    BERENJI, HR
    KHEDKAR, P
    [J]. IEEE TRANSACTIONS ON NEURAL NETWORKS, 1992, 3 (05): : 724 - 740
  • [3] Fuzzy Logic-Based Load-Frequency Control Concerning High Penetration of Wind Turbines
    Bevrani, Hassan
    Daneshmand, Pourya Ranjbar
    [J]. IEEE SYSTEMS JOURNAL, 2012, 6 (01): : 173 - 180
  • [4] Delille G., 2010, P 2010 IEEE PES C IN
  • [5] A review of energy storage technologies for wind power applications
    Diaz-Gonzalez, Francisco
    Sumper, Andreas
    Gomis-Bellmunt, Oriol
    Villafafila-Robles, Roberto
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2012, 16 (04) : 2154 - 2171
  • [6] Battery energy storage technology for power systems-An overview
    Divya, K. C.
    Ostergaard, Jacob
    [J]. ELECTRIC POWER SYSTEMS RESEARCH, 2009, 79 (04) : 511 - 520
  • [7] Inertia response and frequency control techniques for renewable energy sources: A review
    Dreidy, Mohammad
    Mokhlis, H.
    Mekhilef, Saad
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2017, 69 : 144 - 155
  • [8] Torsional Vibrations Mitigation in the Drivetrain of DFIG-Based Grid-Connected Wind Turbine
    Fateh, Fariba
    White, Warren N.
    Gruenbacher, Don
    [J]. IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2017, 53 (06) : 5760 - 5767
  • [9] Investigating the Impacts of Wind Generation Participation in Interconnection Frequency Response
    Gevorgian, Vahan
    Zhang, Yingchen
    Ela, Erik
    [J]. IEEE TRANSACTIONS ON SUSTAINABLE ENERGY, 2015, 6 (03) : 1004 - 1012
  • [10] Frequency Control Support of a Doubly-Fed Induction Generator Based on the Torque Limit
    Kang, Moses
    Kim, Keonhui
    Muljadi, Eduard
    Park, Jung-Wook
    Kang, Yong Cheol
    [J]. IEEE TRANSACTIONS ON POWER SYSTEMS, 2016, 31 (06) : 4575 - 4583