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Optimal Sensor Placement for Flexible Wings Using the Greedy Algorithm.

, , , and . AIM, page 577-582. IEEE, (2020)

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LMI-based fuzzy optimal variance control of airfoil model subject to input constraints., and . FUZZ-IEEE, page 1-6. IEEE, (2017)Switching State-Feedback LPV control with uncertain scheduling parameters., , , and . ACC, page 2381-2386. IEEE, (2017)Optimal Sensor Placement for Flexible Wings Using the Greedy Algorithm., , , and . AIM, page 577-582. IEEE, (2020)Sequential Design of Switching ℋ∞ LPV State-Feedback Control., , and . ACC, page 4547-4552. IEEE, (2019)Fuzzy model-based pitch stabilization and wing vibration suppression of flexible aircraft., , and . ACC, page 3083-3088. IEEE, (2014)Design and testing of FERVOR: FlexiblE and reconfigurable voxel-based robot., , , , , , and . IROS, page 2730-2735. IEEE, (2017)Novel linear parameter-varying modeling and flutter suppression control of a smart airfoil., , and . J. Syst. Control. Eng., (2019)Distributed Pressure Sensing for Enabling Self-Aware Autonomous Aerial Vehicles., , and . IROS, page 6769-6775. IEEE, (2018)Adaptive Disturbance Torque Estimation for Orbiting Spacecraft Using Recursive Least-Squares Methods., and . J. Aerosp. Inf. Syst., 14 (2): 92-102 (2017)Simultaneous Design of Smooth Switching State-Feedback LPV Control., , , and . ACC, page 3368-3373. IEEE, (2018)