Robust nonlinear control design for a missile using backstepping

This thesis has been performed at SAAB Bofors Dynamics. The purpose was to derive a robust control design for a nonlinear missile using backstepping. A particularly interesting matter was to see how different design choices affect the robustness. Backstepping is a relatively new design method for no...

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Main Author: Dahlgren, Johan
Format: Others
Language:English
Published: Linköpings universitet, Institutionen för systemteknik 2002
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-1574
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spelling ndltd-UPSALLA1-oai-DiVA.org-liu-15742013-01-08T13:46:10ZRobust nonlinear control design for a missile using backsteppingengRobust olinjär missilstyrning med hjälp av backsteppingDahlgren, JohanLinköpings universitet, Institutionen för systemteknikInstitutionen för systemteknik2002Reglerteknikbacksteppingnonlinearrobustmissileintegral actionReglerteknikAutomatic controlReglerteknikThis thesis has been performed at SAAB Bofors Dynamics. The purpose was to derive a robust control design for a nonlinear missile using backstepping. A particularly interesting matter was to see how different design choices affect the robustness. Backstepping is a relatively new design method for nonlinear systems which leads to globally stabilizing control laws. By making wise decisions in the design the resulting closed loop can receive significant robustness. The method also makes it possible to benefit from naturally stabilizing aerodynamic forces and momentums. It is based on Lyapunov theory and the control laws and a Lyapunov function are derived simultaneously. This Lyapunov function is used to guarantee stability. In this thesis the control laws for the missile are first derived by using backstepping. The missile dynamics are described with aerodynamic coeffcients with corresponding uncertainties. The robustness of the design w.r.t. the aerodynamic uncertainties is then studied further in detail. One way to analyze how the stability is affected by the errors in the coeffcients is presented. To improve the robustness and remove static errors, dynamics are introduced in the control laws by adding an integrator. One conclusion that has been reached is that it is hard to immediately determine how a certain design choice affects the robustness. Instead it is at the point when algebraic expressions for the closed loop system have been obtained, that it is possible to analyze the affects of a certain design choice. The designed control laws are evaluated by simulations which shows satisfactory results. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-1574LiTH-ISY-Ex, ; 3300application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Reglerteknik
backstepping
nonlinear
robust
missile
integral action
Reglerteknik
Automatic control
Reglerteknik
spellingShingle Reglerteknik
backstepping
nonlinear
robust
missile
integral action
Reglerteknik
Automatic control
Reglerteknik
Dahlgren, Johan
Robust nonlinear control design for a missile using backstepping
description This thesis has been performed at SAAB Bofors Dynamics. The purpose was to derive a robust control design for a nonlinear missile using backstepping. A particularly interesting matter was to see how different design choices affect the robustness. Backstepping is a relatively new design method for nonlinear systems which leads to globally stabilizing control laws. By making wise decisions in the design the resulting closed loop can receive significant robustness. The method also makes it possible to benefit from naturally stabilizing aerodynamic forces and momentums. It is based on Lyapunov theory and the control laws and a Lyapunov function are derived simultaneously. This Lyapunov function is used to guarantee stability. In this thesis the control laws for the missile are first derived by using backstepping. The missile dynamics are described with aerodynamic coeffcients with corresponding uncertainties. The robustness of the design w.r.t. the aerodynamic uncertainties is then studied further in detail. One way to analyze how the stability is affected by the errors in the coeffcients is presented. To improve the robustness and remove static errors, dynamics are introduced in the control laws by adding an integrator. One conclusion that has been reached is that it is hard to immediately determine how a certain design choice affects the robustness. Instead it is at the point when algebraic expressions for the closed loop system have been obtained, that it is possible to analyze the affects of a certain design choice. The designed control laws are evaluated by simulations which shows satisfactory results.
author Dahlgren, Johan
author_facet Dahlgren, Johan
author_sort Dahlgren, Johan
title Robust nonlinear control design for a missile using backstepping
title_short Robust nonlinear control design for a missile using backstepping
title_full Robust nonlinear control design for a missile using backstepping
title_fullStr Robust nonlinear control design for a missile using backstepping
title_full_unstemmed Robust nonlinear control design for a missile using backstepping
title_sort robust nonlinear control design for a missile using backstepping
publisher Linköpings universitet, Institutionen för systemteknik
publishDate 2002
url http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-1574
work_keys_str_mv AT dahlgrenjohan robustnonlinearcontroldesignforamissileusingbackstepping
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