Title :
Structured robust control-loop design with input saturations for tandem ducted fan vehicle
Author :
Changle Xiang ; Yang Wang ; Yue Ma ; Bin Xu
Author_Institution :
Vehicle Res. Center, Beijing Inst. of Technol., Beijing, China
Abstract :
We propose the structured two-loop flight control system of a novel tandem ducted fan vehicle for near hover flight in consideration of actuator saturations on its dynamics. The prescribed controller architecture consists of static output feedback inner loop and four PI outer loop, which is a desirable and intuitive structure for practical implementation. The effect of a limited control activity on the control performance cannot be disregarded since it may lead to performance degradation or even instability. Moreover, at times, the input effort commanded by the control law is approaching the saturation levels in maneuvering flight or in the presence of wind gust disturbances. Therefore, a static anti-windup compensator is employed to preserve the closed-loop stability and performance. Both the feedback controller and the anti-windup compensator are computed simultaneously using recently available nonsmooth optimization techniques. Simulations using both a linearized model and a full nonlinear model of the vehicle under strong wind disturbances are presented to demonstrate its performance.
Keywords :
PI control; actuators; aircraft control; autonomous aerial vehicles; closed loop systems; compensation; control system synthesis; fans; feedback; linearisation techniques; optimisation; robot dynamics; robust control; PI outer loop; actuator saturations; closed-loop stability; control law; control performance; controller architecture; feedback controller; input saturations; limited control activity; linearized model; maneuvering flight; near-hover flight; nonlinear model; nonsmooth optimization techniques; performance degradation; saturation levels; static antiwindup compensator; static output feedback inner loop; structured robust control-loop design; structured two-loop flight control system; system instability; tandem ducted fan vehicle; wind gust disturbances; Aerodynamics; Aerospace control; Computational modeling; Fans; Robustness; Vehicle dynamics; Vehicles;
Conference_Titel :
Unmanned Aircraft Systems (ICUAS), 2015 International Conference on
Conference_Location :
Denver, CO
Print_ISBN :
978-1-4799-6009-5
DOI :
10.1109/ICUAS.2015.7152378