Hardware-in-the-loop Real-time Simulation of Back-to-back Converter for Doubly-fed Wind Power Generation System Based on FPGA

被引:0
|
作者
Gao, Jin [1 ]
Wang, Siyu [1 ]
Zhan, Pengfei [1 ]
Wang, Jing [1 ]
Wang, Ning [1 ]
Liu, Yonghui [1 ]
机构
[1] Shanghai Univ, Sch Elect Engn & Automat, Shanghai, Peoples R China
关键词
Hardware-in-the-loop; back-to-back converter; DFIG system; FPGA;
D O I
10.1109/IPEMC-ECCEAsia48364.2020.9368132
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
Hardware-in-the-loop (HIL) real-time simulation is an effective method for fast verification of high-power back-to-back converter. In this paper, a HIL real-time simulation bench is built with FPGA as the core. Using Verilog hardware description language (HDL), the HIL real-time model of back-to-back converter and doubly-fed induction generator (DFIG) is established in FPGA. Compared with the 5.5kW full-physical bench, the results show that the maximum error between the HIL bench and full-physical bench is less than 5% and the time delay of the HIL real-time model is 0.36 mu s. Therefore, the HIL bench established in this paper is real-time and accurate, which is of great significance to the design and fast verification of high-power grid-connected back-to-back converter for DFIG system.
引用
收藏
页码:1428 / 1434
页数:7
相关论文
共 50 条
  • [31] Real-time Active and Reactive Power Control of a Doubly-Fed Induction Generator based Wind Energy Conversion System
    Pradhan, Prangya Parimita
    Subudhi, Bidyadhar
    [J]. TENCON 2017 - 2017 IEEE REGION 10 CONFERENCE, 2017, : 540 - 544
  • [32] Power Hardware-in-the-Loop: Response of Power Components in Real-Time Grid Simulation Environment
    Muhammad, Moiz
    Behrends, Holger
    Geissendorfer, Stefan
    von Maydell, Karsten
    Agert, Carsten
    [J]. ENERGIES, 2021, 14 (03)
  • [33] Study on Hardware-in-the-Loop Simulation of Doubly Salient Electro-Magnetic Generator for Wind Power Generation
    Tang Guofen
    Zhou Bo
    Guo Honghao
    Zuo Guangjie
    [J]. POWER AND ENERGY ENGINEERING CONFERENCE 2010, 2010, : 81 - 86
  • [34] Control of a wind generation system based on a Brushless Doubly-Fed Induction Generator fed by a matrix converter
    Cardenas, Roberto
    Pena, Ruben
    Wheeler, Patrick
    Clare, Jon
    Munoz, Andres
    Sureda, Alvaro
    [J]. ELECTRIC POWER SYSTEMS RESEARCH, 2013, 103 : 49 - 60
  • [35] FPGA-Based Real-Time Simulation of Nonlinear Permanent Magnet Synchronous Machines for Power Hardware-in-the-Loop Emulation Systems
    Schmitt, Alexander
    Richter, Jan
    Jurkewitz, Uli
    Braun, Michael
    [J]. IECON 2014 - 40TH ANNUAL CONFERENCE OF THE IEEE INDUSTRIAL ELECTRONICS SOCIETY, 2014, : 3763 - 3769
  • [36] Real-Time FPGA-Based Hardware-in-the-Loop Simulation Test Bench Applied to Multiple-Output Power Converters
    Lucia, Oscar
    Urriza, Isidro
    Barragan, Luis. A.
    Navarro, Denis
    Jimenez, Oscar
    Burdio, Jose M.
    [J]. IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2011, 47 (02) : 853 - 860
  • [37] Real-time Control and Hardware-in-the-loop Simulation for Educational Purposes of Wind Energy Systems
    Gambier, Adrian
    [J]. IFAC PAPERSONLINE, 2020, 53 (02): : 17344 - 17349
  • [38] Modeling and Simulation of a Cylinder Hoisting System for Real-Time Hardware-in-the-Loop Testing
    Pawlus, Witold
    Liland, Fred
    Nilsen, Nicolai
    Oydna, Soren
    Hovland, Geir
    Wroldsen, Torstein K.
    [J]. SPE DRILLING & COMPLETION, 2017, 32 (01) : 69 - 78
  • [39] Design of Real-Time Hardware-in-the-Loop TV Guidance System Simulation Platform
    Chen, Zhongyuan
    Liu, Xiaoming
    Chen, Wanchun
    [J]. INTERNATIONAL JOURNAL OF AEROSPACE ENGINEERING, 2017, 2017
  • [40] FPGA-based hardware-in-the-loop real-time simulation implementation for high-speed train electrical traction system
    Guo, Xizheng
    Tang, Yiguo
    Wu, Mingkang
    Zhang, Ziyu
    Yuan, Jiaqi
    [J]. IET ELECTRIC POWER APPLICATIONS, 2020, 14 (05) : 850 - 858