DocumentCode
788810
Title
Design and Flight Testing Evaluation of Formation Control Laws
Author
Gu, Yu ; Seanor, Brad ; Campa, Giampiero ; Napolitano, Marcello R. ; Rowe, Larry ; Gururajan, Srikanth ; Wan, Sheng
Author_Institution
Dept. of Mech. & Aerosp. Eng., West Virginia Univ., Morgantown, WV
Volume
14
Issue
6
fYear
2006
Firstpage
1105
Lastpage
1112
Abstract
This brief presents the results relative to the design and flight testing of formation control laws using a set of YF-22 research unmanned aerial vehicles (UAVs) designed, built, and instrumented at West Virginia University, Morgantown. In the formation flight configuration, a radio control pilot maintains ground control of the "leader" aircraft while the autonomous "follower" aircraft maintains a predefined position and orientation with respect to the "leader" aircraft. The formation controller was designed to have an inner and outerloop structure, where the outerloop guidance control laws minimized the forward, lateral, and vertical distance error by controlling the engine propulsion and generating the desired pitch and roll angles to be tracked by the innerloop controller. The horizontal components of the outerloop controller were designed using a nonlinear dynamic inversion (NLDI) approach, while the vertical channel of the outerloop controller and the innerloop control laws were instead linear. Flight testing results from two-aircraft formation flights confirmed the performance of the designed formation controller
Keywords
aerospace propulsion; aircraft control; aircraft testing; control system synthesis; nonlinear control systems; nonlinear dynamical systems; position control; remotely operated vehicles; telecontrol; UAV; YF-22 research unmanned aerial vehicles; distance error minimization; engine propulsion control; flight testing; formation control laws; formation flight configuration; guidance control; inner loop structure control design; linear dynamic inversion; nonlinear dynamic inversion; outerloop structure control design; pitch angle tracking; roll angle tracking; two-aircraft formation flights; Aerodynamics; Aerospace control; Aerospace electronics; Aircraft propulsion; Engines; Instruments; Radio control; Testing; Unmanned aerial vehicles; Vehicle dynamics; Formation flight; nonlinear dynamic inversion (NLDI); unmanned aerial vehicle (UAV); virtual leader (VL);
fLanguage
English
Journal_Title
Control Systems Technology, IEEE Transactions on
Publisher
ieee
ISSN
1063-6536
Type
jour
DOI
10.1109/TCST.2006.880203
Filename
1709935
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