Title :
Model identification of a micro air vehicle in loitering flight based on attitude performance evaluation
Author :
Wu, Huaiyu ; Sun, Dong ; Zhou, Zhaoying
Author_Institution :
Coll. of Inf. Sci. & Eng., Wuhan Univ. of Sci. & Technol., China
Abstract :
This paper presents a model identification of a micro air vehicle in loitering flight, based on the input-output data collected from flight experiments on a homemade 1-m-sized aircraft. A miniature flight-control system, which consists of the onboard and the ground sections, is equipped with a multichannel data logger associated with the data acquisition software. Modeling and performance analysis are carried out, based on the flight-test data using a system identification technique. Two fourth-order autoregressive with exogenous input (ARX) models are identified to present the attitude characteristics of the longitudinal (pitch) and the lateral (roll) control channels, respectively. The validity of the identified model is verified by both time-domain model prediction and frequency-domain spectral analysis. Based on the proposed ARX models, two compensators are further designed using a frequency-domain method, and then added to the closed-loop control systems to improve the transient performance of the pitch- and roll-control channels. Simulations and experiments demonstrate that the flight performance obtained by the proposed ARX model-based compensation control can be improved.
Keywords :
aerospace robotics; aircraft control; autoregressive processes; closed loop systems; data acquisition; frequency-domain analysis; identification; microrobots; mobile robots; remotely operated vehicles; time-domain analysis; 1 m; attitude performance evaluation; autoregressive with exogenous input models; closed-loop control systems; data acquisition software; flight control system; frequency-domain spectral analysis; homemade aircraft; loitering flight; microair vehicle; model identification; multichannel data logger; pitch-and-roll control channels; system identification technique; time-domain model prediction; unmanned aerial vehicles; Aircraft; Attitude control; Data acquisition; Frequency domain analysis; Performance analysis; Predictive models; Spectral analysis; System identification; Time domain analysis; Vehicles; ARX; Autoregressive with exogenous input; MAV; UAV; loitering flight; micro air vehicle; model; model identification; unmanned aerial vehicle;
Journal_Title :
Robotics, IEEE Transactions on
DOI :
10.1109/TRO.2004.829442