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Q. T. T. Nguyen

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Conference Jul 2026

Gain-Scheduled Linear Parameter-Varying Control with Aerodynamic Torque Observation for PMSG in WTCS

This study proposes a gain-scheduled linear parameter-varying (LPV) control strategy for rotor speed regulation of a permanent magnet synchronous generator (PMSG) in wind turbine conversion systems (WTCS). The nonlinear electromechanical dynamics are reformulated into a speed-dependent LPV model over the operating region. To support reference generation without direct aerodynamic torque measurement, a first-order aerodynamic torque observer is introduced. Based on a set of local linear quadratic regulators designed at selected operating points, a smooth gain-scheduling law is constructed through a neural-network-based convex interpolation mechanism. The resulting controller preserves continuity across operating conditions and improves dynamic response compared with a conventional PI-PI strategy. Closed-loop stability is discussed using a common Lyapunov theory for the local closed-loop models, and simulation studies under nominal and parameter-perturbed conditions are carried out to evaluate the proposed method. The simulation results indicate that the proposed strategy can provide satisfactory performance.

A. T. Nguyen, Q. T. T. Nguyen, L. Tran et al. · 0 citations