2022
DOI: 10.1016/j.apenergy.2022.118821
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Coordinated optimization on energy capture and torque fluctuation of wind turbines via variable weight NMPC with fuzzy regulator

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Cited by 42 publications
(22 citation statements)
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“…In recent years, some improved yaw control techniques [23][24][25][26][27][28] are presented to implement the YCB of PMSG-/DFIG-based WTs DGSs in grid-connected applications. In [23], a multi-step prediction model-based advanced MPC technique is proposed for the yaw control of a horizontal-axis WT.…”
Section: Control Techniques For Yaw Control Block (Ycb)mentioning
confidence: 99%
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“…In recent years, some improved yaw control techniques [23][24][25][26][27][28] are presented to implement the YCB of PMSG-/DFIG-based WTs DGSs in grid-connected applications. In [23], a multi-step prediction model-based advanced MPC technique is proposed for the yaw control of a horizontal-axis WT.…”
Section: Control Techniques For Yaw Control Block (Ycb)mentioning
confidence: 99%
“…In addition, FLC membership functions are optimized via an improved multi-objective marine predator algorithm (IMMPA). The presented IMMPA [28] realizes an effective performance in terms of optimal weight coefficients search and subsequently it accomplishes reduced generator torque fluctuations and maximized energy capture simultaneously. Specifically, the NMPC optimized using IMMPA respectively offers more minimized generator torque fluctuations and a more energy capture by 0.984% and 0.2% than the NMPC optimized using multi-objective marine predator algorithm (MMPA) [28].…”
Section: Control Techniques For Yaw Control Block (Ycb)mentioning
confidence: 99%
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“…Over the past two decades, the development of effective methods to establish reliable forecasting of wind power generation has been of primordial concern for various research works [7][8][9][10]. These forecasting methods can be broadly divided into two main categories which are statistical methods [8] and physical methods [9,10].…”
Section: Introductionmentioning
confidence: 99%