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Mkhoyan, T. (author), Wang, Xuerui (author), de Visser, C.C. (author), De Breuker, R. (author)
The advancements made in aircraft control methodology and the tendency towards increasingly lighter aircraft structures open the opportunity to higher structural performance and aerodynamic efficiency. However, with the reduction of structure weight, the structure stiffness reduces typically, which makes the structure more susceptible to...
other 2020
document
Sun, Sihao (author), Wang, Xuerui (author), Chu, Q. P. (author), de Visser, C.C. (author)
In order to further expand the flight envelope of quadrotors under actuator failures, we design a nonlinear sensor-based fault-tolerant controller to stabilize a quadrotor with failure of two opposing rotors in the high-speed flight condition (>8 m/s). The incremental nonlinear dynamic inversion approach which excels in handling model...
journal article 2020
document
Ferrier, Yvonne L. (author), Nguyen, Nhan T. (author), Ting, Eric (author), Chaparro, Daniel (author), Wang, Xuerui (author), de Visser, C.C. (author), Chu, Q. P. (author)
This paper presents a novel active gust load alleviation approach within a multi-objective flight control framework developed by NASA for a flexible wing aircraft. The aircraft model is based on the NASA Generic Transport Model (GTM). The wing structures incorporate an aerodynamic control surface known as the Variable Camber Continuous...
conference paper 2018
document
Sun, Sihao (author), Sijbers, Leon (author), Wang, Xuerui (author), de Visser, C.C. (author)
In order to achieve high-speed flight of a damaged quadrotor with complete loss of a single rotor, a multiloop hybrid nonlinear controller is designed. By fully making use of sensor measurements, the model dependence of this control method is reduced, which is conducive to handling disturbance from the unknown aerodynamic effects. This...
journal article 2018
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