DocumentCode :
2359413
Title :
High-Level Flight Controllers Applied to Helicopter Navigation: A Comparative Study
Author :
Pizetta, Igor H B ; Brandão, Alexandre S. ; Sarcinelli-Filho, Mario ; Carelli, Ricardo
Author_Institution :
Fed. Univ. of Espirito Santo (UFES), Vitoria, Brazil
fYear :
2012
fDate :
16-19 Oct. 2012
Firstpage :
162
Lastpage :
167
Abstract :
In this work three high-level nonlinear flight controllers for a helimodel are compared. A complete dynamic model, including cross inertial moments, an intermediary dynamic model, considering just the main inertial moments, and a simplified one, considering small angles and the correspondent approximations for the trigonometrical functions, were addressed. The performance criteria IAE and ITAE were the metrics used to compare such models, applied to simulation results obtained using such models in the design of the flight controllers. The result is that for tasks demanding aggressive maneuvers and/or requiring greater precision the complete dynamic model should be adopted, resulting in a more complete controller. In turn, a simpler controller, designed using the simplified dynamic model, can be adopted when a higher flight performance is not demanded and/or the processing unit is a low-capability one.
Keywords :
aerospace control; control system synthesis; helicopters; nonlinear control systems; vehicle dynamics; IAE; ITAE; complete dynamic model; cross inertial moments; flight controller design; helicopter navigation; helimodel; high-level nonlinear flight controllers; intermediary dynamic model; main inertial moments; performance criteria; processing unit; simplified dynamic model; trigonometrical functions; Atmospheric modeling; Dynamics; Helicopters; Mathematical model; Stability analysis; Vehicle dynamics; Dynamic model; UAV; comparative analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Robotics Symposium and Latin American Robotics Symposium (SBR-LARS), 2012 Brazilian
Conference_Location :
Fortaleza
Print_ISBN :
978-1-4673-4650-4
Type :
conf
DOI :
10.1109/SBR-LARS.2012.33
Filename :
6363336
Link To Document :
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