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Fault-tolerant sensorless control of wind turbines achieving efficiency maximization in the presence of electrical faults.

, , and . J. Frankl. Inst., 355 (5): 2266-2282 (2018)

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Robust Output Tracking with Structured Perturbations: A Multiple Model Control Based Approach., and . Eur. J. Control, 6 (4): 372-383 (2000)An observer based switching control strategy for the stabilization of uncertain multi-input-multi-output plants., and . Int. J. Control, 80 (4): 583-592 (2007)On the adoption of a fractional-order sliding surface for the robust control of integer-order LTI plants., , and . Autom., (2015)Fault-tolerant sensorless control of wind turbines achieving efficiency maximization in the presence of electrical faults., , and . J. Frankl. Inst., 355 (5): 2266-2282 (2018)Variable structure control of discretized continuous-time systems., and . IEEE Trans. Autom. Control., 43 (9): 1329-1334 (1998)Robust stabilization of nonlinear plants with uncertain hysteresis-like actuator nonlinearities., , and . ECC, page 1732-1737. IEEE, (2003)The tracking problem for a mobile robot: A sliding mode controller for the dynamical model., , and . ECC, page 964-968. IEEE, (1999)Fault-tolerant dynamic control allocation for permanent magnet synchronous motors., and . ACC, page 1585-1590. IEEE, (2015)Mechanical fault detection for induction motors based on vibration analysis: a case study., , , , and . IECON, page 1-6. IEEE, (2021)A fault tolerant sliding mode controller for accommodating actuator failures., , and . CDC/ECC, page 3091-3096. IEEE, (2005)