Direct Power Control of a Surface-Mounted Permanent Magnet Synchronous Generator Wind Turbine for Offshore Applications

被引:5
作者
Emeghara, Chikezie M. [1 ]
Mahajan, Satish M. [1 ]
Arzani, Ali [1 ]
机构
[1] Tennessee Technol Univ, Ctr Energy Syst Res CESR, Cookeville, TN 38505 USA
关键词
Back-to-back converter; direct power control; surface-mounted permanent magnet synchronous generator; short-circuit ratio; weak electric networks; CONVERTERS; CHALLENGES;
D O I
10.1109/ACCESS.2023.3287872
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper proposes a direct power control scheme for an offshore wind turbine-driven surface-mounted permanent magnet synchronous generator with a full back-to-back converter situated onshore to decentralize the weight of the turbine. The proposed model is designed in a stationary reference frame and does not require a phase-locked loop as opposed to the traditional vector current control method. Simple feed-forward and feedback control loops are used in the proposed model to extract the maximum available wind power, maintain constant voltage at the coupling DC link, and ensure power injection into the electric network at unity power factor. Simulation results carried out in MATLAB/SIMULINK show that the proposed model has a fast transient response and steady-state performance consistent with the vector current control model. Furthermore, eigenvalue analysis results demonstrate that the proposed method's performance is robust to variations in different system parasitic elements, even under both stiff and weak electric network conditions. These results also indicate that the back-to-back converter can operate effectively when located onshore close to the load center while the turbine is in close proximity offshore. This can be suitable for multiple specific offshore applications as it can potentially reduce the overall weight, volume, and cost of the offshore wind turbine infrastructure.
引用
收藏
页码:62409 / 62423
页数:15
相关论文
共 44 条
[1]   Evaluation of Predictive Direct Current and Direct Power Control for Grid-connected PV Systems [J].
Ahmed, Mostafa ;
Abdelrahem, Mohamed ;
Harbi, Ibrahim ;
Kennel, Ralph .
2020 5TH IEEE WORKSHOP ON THE ELECTRONIC GRID (EGRID), 2020,
[2]  
[Anonymous], 1997, IEEE STANDARD DICT E, V6e, P1, DOI DOI 10.1109/IEEESTD.1997.85949
[3]  
Belkourchia Y., 2019, 2019 5 INT C OPT APP, P1, DOI DOI 10.1109/ICSRESA49121.2019.918251
[4]  
Bose Sumanta, 2017, 2017 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC), DOI 10.1109/CLEOE-EQEC.2017.8086650
[5]   A Comprehensive Overview of Power Converter Applied in High-Power Wind Turbine: Key Challenges and Potential Solutions [J].
Catalan, Pedro ;
Wang, Yanbo ;
Arza, Joseba ;
Chen, Zhe .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2023, 38 (05) :6169-6195
[6]  
Chengyuan He, 2019, CES Transactions on Electrical Machines and Systems, V3, P94, DOI [10.30941/cestems.2019.00013, 10.30941/CESTEMS.2019.00013]
[7]   Analysis of Phase-Locked Loop Low-Frequency Stability in Three-Phase Grid-Connected Power Converters Considering Impedance Interactions [J].
Dong, Dong ;
Wen, Bo ;
Boroyevich, Dushan ;
Mattavelli, Paolo ;
Xue, Yaosuo .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2015, 62 (01) :310-321
[8]   Comparative Study of Surface-Mounted and Interior Permanent-Magnet Motors for High-Speed Applications [J].
Dong, Jianning ;
Huang, Yunkai ;
Jin, Long ;
Lin, Heyun .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2016, 26 (04)
[9]   A Comparative Study of Two Widely Used Grid-Forming Droop Controls on Microgrid Small-Signal Stability [J].
Du, Wei ;
Chen, Zhe ;
Schneider, Kevin P. ;
Lasseter, Robert H. ;
Nandanoori, Sai Pushpak ;
Tuffner, Francis K. ;
Kundu, Soumya .
IEEE JOURNAL OF EMERGING AND SELECTED TOPICS IN POWER ELECTRONICS, 2020, 8 (02) :963-975
[10]   Advanced Vector Control for Voltage Source Converters Connected to Weak Grids [J].
Egea-Alvarez, Agust ;
Fekriasl, Sajjad ;
Hassan, Fainan ;
Gomis-Bellmunt, Oriol .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2015, 30 (06) :3072-3081