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New Adaptive Super-Twisting Extended-State Observer-Based Sliding Mode Scheme with Application to FOWT Pitch Control

Ronglin Ma, Fei Lu Siaw, Tzer Hwai Gilbert Thio, Wenxiang Yang

2024Journal of Marine Science and Engineering10 citationsDOIOpen Access PDF

Abstract

This paper details the transformation of the velocity or position-tracking problem of a class of uncertain systems using finite time stability control for first-order uncertain systems. A new composite extended-state observer sliding mode (ESOSM) scheme is proposed, which includes an adaptive super-twisting-like ESO and an adaptive super-twisting controller. The adaptive super-twisting controller is implemented through a barrier function-based second-order sliding mode algorithm. To further reduce control chattering and improve control performance, the adaptive super-twisting-like ESO, which employs high-order terms in the super-twisting algorithm to accelerate convergence, is designed to observe the lumped uncertainty in real time. The advantages of the proposed scheme are verified by a numerical example and application with regard to floating offshore wind turbine (FOWT) pitch control. Compared with proportional integral (PI) and adaptive super-twisting sliding mode (ASTSM) schemes, better results are obtained in velocity tracking and fatigue load suppression. For the FOWT pitch control application, the platform roll, pitch, and yaw are decreased by 3%, 2%, and 4%, respectively, compared to the PI scheme at an average turbulent wind speed of 17 m/s and turbulence intensity of 17.27%.

Topics & Concepts

Control theory (sociology)Observer (physics)Sliding mode controlController (irrigation)State observerTurbinePitch controlConvergence (economics)Offshore wind powerComputer sciencePitch angleWind speedTracking (education)EngineeringControl (management)PhysicsNonlinear systemGeophysicsBiologyEconomic growthPsychologyAgronomyArtificial intelligenceMeteorologyMechanical engineeringPedagogyQuantum mechanicsEconomicsAdaptive Control of Nonlinear SystemsWave and Wind Energy SystemsMagnetic Bearings and Levitation Dynamics
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