Suppression of falling leaf mode phenomenon for F/A - 18 via L1 adaptive feedback controller

F / A - 18 Hornet aircraft is prone to nonlinear phenomenon known as the fulling leaf mode, which when operating at deep stall is often combined with large side slip and yaw motion resuhs in significant rotation. The resuhant rotation triggers the aircraft to lose ahitude at a very fuster rate. T...

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Main Author: Vijayakumar Meera
Other Authors: Sridhar Idapalapati
Format: Theses and Dissertations
Language:English
Published: 2017
Subjects:
Online Access:http://hdl.handle.net/10356/72702
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-727022023-03-11T16:53:30Z Suppression of falling leaf mode phenomenon for F/A - 18 via L1 adaptive feedback controller Vijayakumar Meera Sridhar Idapalapati School of Mechanical and Aerospace Engineering DRNTU::Engineering::Manufacturing F / A - 18 Hornet aircraft is prone to nonlinear phenomenon known as the fulling leaf mode, which when operating at deep stall is often combined with large side slip and yaw motion resuhs in significant rotation. The resuhant rotation triggers the aircraft to lose ahitude at a very fuster rate. The intention of this work is to design LI adaptive controller for F / A - 18 aircraft intended to suppress the fulling leaf phenomenon. The design developed will be using Lyapunov's based adaptive laws to compensate for the uncertainties in design variable and comparing the associated performance with the conventional controller. The L 1 adaptive controller implementation to F / A -18 aircraft has proved good resuhs in eliminating the uncertainties when implemented and also proper selection of fiher in adaptive control design can handle uncertainties and disturbance well to track reference signal. Compared to the MRAC formulation introduction of fiher in LI is more robust to uncertain parameters. The performance study on implementing LI adaptive controller to the VA V is also found in this report. Resuhs indicate that introduction of fiher in LI adaptive controller provides good improvement in surpassing uncertainties with minimized effect on cost criteria. The resuhs of simulations show how efficient the controller is designed to separate adaption from robustness and the efficient way of handling performance bounds. Master of Science (Aerospace Engineering) 2017-10-06T01:34:20Z 2017-10-06T01:34:20Z 2017 Thesis http://hdl.handle.net/10356/72702 en 107 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Manufacturing
spellingShingle DRNTU::Engineering::Manufacturing
Vijayakumar Meera
Suppression of falling leaf mode phenomenon for F/A - 18 via L1 adaptive feedback controller
description F / A - 18 Hornet aircraft is prone to nonlinear phenomenon known as the fulling leaf mode, which when operating at deep stall is often combined with large side slip and yaw motion resuhs in significant rotation. The resuhant rotation triggers the aircraft to lose ahitude at a very fuster rate. The intention of this work is to design LI adaptive controller for F / A - 18 aircraft intended to suppress the fulling leaf phenomenon. The design developed will be using Lyapunov's based adaptive laws to compensate for the uncertainties in design variable and comparing the associated performance with the conventional controller. The L 1 adaptive controller implementation to F / A -18 aircraft has proved good resuhs in eliminating the uncertainties when implemented and also proper selection of fiher in adaptive control design can handle uncertainties and disturbance well to track reference signal. Compared to the MRAC formulation introduction of fiher in LI is more robust to uncertain parameters. The performance study on implementing LI adaptive controller to the VA V is also found in this report. Resuhs indicate that introduction of fiher in LI adaptive controller provides good improvement in surpassing uncertainties with minimized effect on cost criteria. The resuhs of simulations show how efficient the controller is designed to separate adaption from robustness and the efficient way of handling performance bounds.
author2 Sridhar Idapalapati
author_facet Sridhar Idapalapati
Vijayakumar Meera
format Theses and Dissertations
author Vijayakumar Meera
author_sort Vijayakumar Meera
title Suppression of falling leaf mode phenomenon for F/A - 18 via L1 adaptive feedback controller
title_short Suppression of falling leaf mode phenomenon for F/A - 18 via L1 adaptive feedback controller
title_full Suppression of falling leaf mode phenomenon for F/A - 18 via L1 adaptive feedback controller
title_fullStr Suppression of falling leaf mode phenomenon for F/A - 18 via L1 adaptive feedback controller
title_full_unstemmed Suppression of falling leaf mode phenomenon for F/A - 18 via L1 adaptive feedback controller
title_sort suppression of falling leaf mode phenomenon for f/a - 18 via l1 adaptive feedback controller
publishDate 2017
url http://hdl.handle.net/10356/72702
_version_ 1761781270337028096