Enhancing Stability and Performance of Hybrid Offshore Wind Platforms: A Novel Fuzzy Logic Control Approach with Computational Machine Learning

被引:1
作者
Ahmad, Irfan [1 ]
M'zoughi, Fares [1 ]
Aboutalebi, Payam [2 ]
Garrido, Izaskun [1 ]
Garrido, Aitor J. [1 ]
机构
[1] Univ Basque Country, UPV,EIB,BIE, EHU,Automat Control Grp ACG, Dept Automat Control & Syst Engn,Engn Sch Bilbao, Rafael Moreno 3, Bilbao 48013, Spain
[2] Norwegian Univ Sci & Technol NTNU, Dept Marine Technol, N-7491 Trondheim, Norway
来源
2023 11TH INTERNATIONAL CONFERENCE ON CONTROL, MECHATRONICS AND AUTOMATION, ICCMA | 2023年
关键词
hybrid offshore platforms; energy absorption; dynamic response; load mitigation; cost efficiency; regression-based modeling; aero-hydro-elastic-servo-mooring system; Fuzzy Logic Control (FLC); wind and wave conditions; MultiSurf; WAMIT; FAST; WAVE;
D O I
10.1109/ICCMA59762.2023.10374606
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Harnessing the power of wind and waves for renewable energy production has become vital in the quest for sustainable electricity generation. The fusion of Floating Offshore Wind Turbines (FOWTs) and Oscillating Water Columns (OWCs) has introduced a groundbreaking concept of hybrid offshore platforms, offering immense potential for energy absorption, reduced dynamic response, load mitigation, and improved cost efficiency. The primary goals of this study revolve around two key objectives: (i) the development of a regression-based modeling technique for the hybrid aero-hydro-elastic-servo-mooring coupled numerical system, and (ii) the implementation of a customized fuzzy-based control mechanism to ensure platform stability. To achieve these objectives, computational Machine Learning (ML) tools, specifically Artificial Neural Networks (ANNs), are utilized to replicate the behavior of the detailed numerical model of the FOWTs integrated with OWCs. Subsequently, a Fuzzy Logic Control (FLC) scheme is employed to establish a structural controller that effectively mitigates unwanted vibrations. The experimental results confirm the potential of ANN-based modeling as a simpler yet effective alternative to complicated nonlinear NREL-5MW FOWT dynamical models. Furthermore, the use of the FLC system enhances platform stability in a variety of wind and wave conditions.
引用
收藏
页码:346 / 351
页数:6
相关论文
共 22 条
[1]   A control technique for hybrid floating offshore wind turbines using oscillating water columns for generated power fluctuation reduction [J].
Aboutalebi, Payam ;
M'zoughi, Fares ;
Garrido, Izaskun ;
Garrido, Aitor J. .
JOURNAL OF COMPUTATIONAL DESIGN AND ENGINEERING, 2023, 10 (01) :250-265
[2]  
Ahmad Irfan, 2022, 2022 26th International Conference on Circuits, Systems, Communications and Computers (CSCC), P72, DOI 10.1109/CSCC55931.2022.00023
[3]  
Ahmad I., 2020, IEEE Access, V8
[4]   Fuzzy logic control of an artificial neural network-based floating offshore wind turbine model integrated with four oscillating water columns [J].
Ahmad, Irfan ;
M'Zoughi, Fares ;
Aboutalebi, Payam ;
Garrido, Izaskun ;
Garrido, Aitor J. .
OCEAN ENGINEERING, 2023, 269
[5]   A regressive machine-learning approach to the non-linear complex FAST model for hybrid floating offshore wind turbines with integrated oscillating water columns [J].
Ahmad, Irfan ;
M'zoughi, Fares ;
Aboutalebi, Payam ;
Garrido, Izaskun ;
Garrido, Aitor J. .
SCIENTIFIC REPORTS, 2023, 13 (01)
[6]   Technology Assessment of offshore wind turbines: Floating platforms-Validated by case study [J].
Alkhalidi, Ammar ;
Kaylani, Hazem ;
Alawawdeh, Noureddine .
RESULTS IN ENGINEERING, 2023, 17
[7]  
[Anonymous], 2013, International Journal of Electrical and Electronic Engineering & Telecommunications, V2, P108
[8]   Coupled aero-hydro-servo-elastic methods for floating wind turbines [J].
Chen, Jiahao ;
Hu, Zhiqiang ;
Liu, Geliang ;
Wan, Decheng .
RENEWABLE ENERGY, 2019, 130 :139-153
[9]   Renewable energy deployment in Europe up to 2030 and the aim of a triple dividend [J].
Duscha, Vicki ;
Fougeyrollas, Arnaud ;
Nathani, Carsten ;
Pfaff, Matthias ;
Ragwitz, Mario ;
Resch, Gustav ;
Schade, Wolfgang ;
Breitschopf, Barbara ;
Walz, Rainer .
ENERGY POLICY, 2016, 95 :314-323
[10]  
Gomes R. P., 2011, P 9 EUROPEAN WAVE TI