Fault-tolerant finite control set-model predictive control for marine current turbine applications

被引:16
|
作者
Pham, Huu-Tam [1 ]
Bourgeot, Jean-Matthieu [1 ]
Benbouzid, Mohamed [2 ,3 ]
机构
[1] Ecole Natl Ingn Brest, FRE CNRS IRDL 3744, F-29280 Plouzane, France
[2] Univ Brest, FRE CNRS IRDL 3744, F-29238 Brest, France
[3] Shanghai Maritime Univ, Shanghai, Peoples R China
关键词
fault tolerant control; predictive control; hydraulic turbines; permanent magnet generators; synchronous generators; fault-tolerant finite control set-model; marine current turbine applications; marine current energy conversion system; five-phase permanent magnet synchronous generator; swell effect; open-circuit fault conditions; reference currents; reference torque; copper losses; Raz-de-Sein site; Bretagne; France; FTC strategy; SPEED CONTROL; GENERATOR; SYSTEMS;
D O I
10.1049/iet-rpg.2017.0431
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study deals with a fault-tolerant control (FTC) strategy for a marine current energy conversion system based on a five-phase permanent magnet synchronous generator. First, a finite control set-model predictive control is adopted to highlight the advantages of this kind of generator in normal mode. The speed tracking performance is evaluated when the system operates under swell effect. Second, its fault tolerance is evaluated under various open-circuit fault conditions. In this case, the reference currents are reconfigured online to achieve the reference torque while minimising the copper losses. Extensive simulations, based on real-tidal speed data measured at the Raz-de-Sein site in Bretagne, France, are carried out for the validation of the proposed FTC strategy.
引用
收藏
页码:415 / 421
页数:7
相关论文
共 50 条
  • [41] Active actuator fault-tolerant control of a wind turbine benchmark model
    Simani, S.
    Castaldi, P.
    INTERNATIONAL JOURNAL OF ROBUST AND NONLINEAR CONTROL, 2014, 24 (8-9) : 1283 - 1303
  • [42] Fault Tolerant Three Level ANPC Inverter Circuit with Finite Set Model Predictive Control
    Li Xue-feng
    Lei Xiao-ben
    Han Jan-ding
    Wang Chuan-qi
    Zeng Jia-qi
    2018 2ND INTERNATIONAL CONFERENCE ON AEROSPACE TECHNOLOGY, COMMUNICATIONS AND ENERGY SYSTEMS (ATCES 2018), 2018, 449
  • [43] Finite Control Set-Model Predictive Control Synthesized with SVPWM for quasi Z-Source Inverter
    Bakeer, Abualkasim
    Alhasheem, Mohammed
    2021 IEEE 22ND WORKSHOP ON CONTROL AND MODELLING OF POWER ELECTRONICS (COMPEL), 2021,
  • [44] Finite Control Set-Model Predictive Control of a Flying Capacitor Multilevel Chopper Using Petri Nets
    Salinas, Fernando
    Gonzalez, Mario A.
    Escalante, Miguel F.
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2016, 63 (09) : 5891 - 5899
  • [45] Finite control set model predictive torque control for IM systems driven by three-phase eight-switch fault-tolerant inverter
    Zhang, Lei
    Wang, Siming
    Liang, Yunhua
    Journal of Railway Science and Engineering, 2020, 17 (01) : 207 - 214
  • [46] Fault-Tolerant Technique Against Current Sensors for Model Predictive Control of Induction Motor Drives
    Chakraborty, Rajarshi
    Das, Sukanta
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2024, 39 (07) : 8506 - 8516
  • [47] Finite Control Set-Model Predictive Flux Control of PMSM for Air Compressor of Fuel Cell Systems
    Yan, Liming
    Dou, Manfeng
    Zhao, Dongdong
    Hua, Zhiguang
    2016 IEEE VEHICLE POWER AND PROPULSION CONFERENCE (VPPC), 2016,
  • [48] A Powerful Finite Control Set-Model Predictive Control Algorithm for Quasi Z-Source Inverter
    Bakeer, Abualkasim
    Ismeil, Mohamed A.
    Orabi, Mohamed
    IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS, 2016, 12 (04) : 1371 - 1379
  • [49] Simplified Finite Control Set-Model Predictive Control for Matrix Converter-Fed PMSM Drives
    Siami, Mohsen
    Khaburi, Davood Arab
    Rodriguez, Jose
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2018, 33 (03) : 2438 - 2446
  • [50] Dynamic Loss Minimization of Finite Control Set-Model Predictive Torque Control for Electric Drive System
    Xie, Wei
    Wang, Xiaocan
    Wang, Fengxiang
    Xu, Wei
    Kennel, Ralph
    Gerling, Dieter
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2016, 31 (01) : 849 - 860