Anti-windup synthesis using Riccati equations

This thesis studies the design and implementation of anti-windup compensators for systems with magnitude and rate-limited actuators; the thesis contains four main contributions. The first is the development of a new method for anti-windup compensator design, based on the solution of a single Riccati...

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Main Author: Esmeral, Jorge Sofrony
Published: University of Leicester 2007
Subjects:
Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.486684
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spelling ndltd-bl.uk-oai-ethos.bl.uk-4866842016-12-08T03:23:36ZAnti-windup synthesis using Riccati equationsEsmeral, Jorge Sofrony2007This thesis studies the design and implementation of anti-windup compensators for systems with magnitude and rate-limited actuators; the thesis contains four main contributions. The first is the development of a new method for anti-windup compensator design, based on the solution of a single Riccati equation, for systems with magnitude saturated actuators. The second contribution shows how this new method can be adapted to systems with rate saturation. The third contribution describes the application of the anti-windup techniques developed to a complex experimental aircraft model in order to reduce the susceptibility to pilot-induced-oscillations. The thesis culminates with a description and analysis of the implementation of these anti-windup compensators on a real aircraft and the subsequent flight tests. The flight test results clearly illustrate the advantages of employing anti-windup compensation in terms of improved handling qualities and reduced susceptibility pilot-induced-oscillations.629.13University of Leicesterhttp://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.486684http://hdl.handle.net/2381/30250Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 629.13
spellingShingle 629.13
Esmeral, Jorge Sofrony
Anti-windup synthesis using Riccati equations
description This thesis studies the design and implementation of anti-windup compensators for systems with magnitude and rate-limited actuators; the thesis contains four main contributions. The first is the development of a new method for anti-windup compensator design, based on the solution of a single Riccati equation, for systems with magnitude saturated actuators. The second contribution shows how this new method can be adapted to systems with rate saturation. The third contribution describes the application of the anti-windup techniques developed to a complex experimental aircraft model in order to reduce the susceptibility to pilot-induced-oscillations. The thesis culminates with a description and analysis of the implementation of these anti-windup compensators on a real aircraft and the subsequent flight tests. The flight test results clearly illustrate the advantages of employing anti-windup compensation in terms of improved handling qualities and reduced susceptibility pilot-induced-oscillations.
author Esmeral, Jorge Sofrony
author_facet Esmeral, Jorge Sofrony
author_sort Esmeral, Jorge Sofrony
title Anti-windup synthesis using Riccati equations
title_short Anti-windup synthesis using Riccati equations
title_full Anti-windup synthesis using Riccati equations
title_fullStr Anti-windup synthesis using Riccati equations
title_full_unstemmed Anti-windup synthesis using Riccati equations
title_sort anti-windup synthesis using riccati equations
publisher University of Leicester
publishDate 2007
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.486684
work_keys_str_mv AT esmeraljorgesofrony antiwindupsynthesisusingriccatiequations
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