DFIG-based WECS Fault Ride through Complying with Australian Grid Codes

被引:0
|
作者
Khamaira, Mahmoud Y. [1 ]
Abu-Siada, A. [1 ]
Islam, S. [1 ]
机构
[1] Curtin Univ, Dept Elect & Comp Engn, Perth, WA, Australia
关键词
DFIG; WECS; SMES; Grid codes; GENERATOR;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Doubly Fed Induction Generators (DFIGs) are widely used in variable speed wind turbine owing to its superior advantages that include ability to extract more energy from turbine, capability to control active and reactive power independently and the use of reduced converter rating that reduces its overall cost. On the other side fluctuating output power, weak fault ride through capability and high sensitivity to grid disturbances are the main issues that affect DFIG performance. In this paper, superconducting magnetic energy storage (SMES) unit is proposed to improve the fault ride through (FRT) capability of DFIG-based wind energy conversion system (WECS) during voltage sag and voltage swell events in the grid side. A new control approach for SMES unit using hysteresis current controller (HCC) along with proportional integral (PI) controller is introduced. Australian grid codes are used to examine the capability of the proposed controller to improve the FRT of the DFIG and hence maintaining the wind turbine connection to the grid during studied faults. Simulations results show the effectiveness of the SMES controller in maintaining system parameters within safety margins that comply with the Australian grid codes.
引用
收藏
页数:5
相关论文
共 50 条
  • [41] Enhanced Fault Ride - Through Ability of DFIG-Based Wind Energy System Using Superconducting Fault Current Limiter
    Sahoo, Subhendu Sekhar
    Mishra, Anirban
    Chatterjee, Kalyan
    Sharma, Chandan Kumar
    2017 4TH INTERNATIONAL CONFERENCE ON POWER, CONTROL & EMBEDDED SYSTEMS (ICPCES), 2017,
  • [42] Application of Superconductors to Improve the Performance of DFIG-Based WECS
    Mosaad, Mohammed, I
    Abu-Siada, Ahmed
    El-Naggar, Mohamed F.
    IEEE ACCESS, 2019, 7 : 103760 - 103769
  • [43] Simulation Research on LVRT Capability of DFIG-based WECS During Severe Grid Voltage Sags
    Hong-sheng-SU
    Chen, Kai
    INTERNATIONAL CONFERENCE ON CONTROL AND AUTOMATION (ICCA 2016), 2016, : 270 - 274
  • [44] Enhanced Operation for DFIG-based WECS using Resonant Feedback Compensators under Grid Unbalance
    Cheng, Peng
    Nian, Heng
    2013 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2013, : 2283 - 2288
  • [45] Coordinated Fault Ride through Strategy for SCIG based WECS
    Abuja, H.
    Sharma, S.
    Singh, G.
    Sharma, Arvind
    Singh, Arika
    2016 SECOND INTERNATIONAL CONFERENCE ON COMPUTATIONAL INTELLIGENCE & COMMUNICATION TECHNOLOGY (CICT), 2016, : 424 - 429
  • [46] High Voltage Ride-Through of DFIG-based Wind Turbines
    Feltes, C.
    Engelhardt, S.
    Kretschmann, J.
    Fortmann, J.
    Koch, F.
    Erlich, I.
    2008 IEEE POWER & ENERGY SOCIETY GENERAL MEETING, VOLS 1-11, 2008, : 1477 - 1484
  • [47] Control of a DFIG-based wind system in presence of large grid faults:: analysis of voltage ride through capability
    Arbi, Jihen
    Slama-Belkhodja, Ilhein
    Arnaltes Gomez, Santiago
    PROCEEDINGS OF THE 9TH INTERNATIONAL CONFERENCE ON ELECTRICAL POWER QUALITY AND UTILISATION, VOLS 1 AND 2, 2007, : 306 - +
  • [48] High-Order Sliding Mode Control for DFIG-Based Wind Turbine Fault Ride-Through
    Benbouzid, Mohamed
    Beltran, Brice
    Amirat, Yassine
    Yao, Gang
    Han, Jingang
    Mangel, Herve
    39TH ANNUAL CONFERENCE OF THE IEEE INDUSTRIAL ELECTRONICS SOCIETY (IECON 2013), 2013, : 7670 - 7674
  • [49] Enhancing the fault ride through capability of DFIG-based wind energy system using saturated core fault current limiter
    Tripathi, Prashant Mani
    Sahoo, Subhendu Sekhar
    Chatterjee, Kalyan
    JOURNAL OF ENGINEERING-JOE, 2019, (18): : 4916 - 4921
  • [50] A Dynamic Multi-Cell FCL to Improve the Fault Ride through Capability of DFIG-Based Wind Farms
    Shafiee, M. R.
    Kartijkolaie, H. Shahbabaei
    Firouzi, M.
    Mobayen, S.
    Fekih, A.
    ENERGIES, 2020, 13 (22)