Design of control systems based on Q(Youla)-parmetrization

Bibliography: leaves 136-145. === This thesis is concerned with the application of a method for control system design based on Youla(Q)-Parametrization. The fundamental concepts of the parametrization method have been used by Newton et al, Franklin and Raggazzini [Maciejewski, 1989] as early as 1957...

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Main Author: Jacobs, F C
Other Authors: Braae, Martin
Format: Dissertation
Language:English
Published: University of Cape Town 2014
Subjects:
Online Access:http://hdl.handle.net/11427/8356
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-uct-oai-localhost-11427-83562020-12-10T05:11:07Z Design of control systems based on Q(Youla)-parmetrization Jacobs, F C Braae, Martin Electrical and Electronic Engineering Bibliography: leaves 136-145. This thesis is concerned with the application of a method for control system design based on Youla(Q)-Parametrization. The fundamental concepts of the parametrization method have been used by Newton et al, Franklin and Raggazzini [Maciejewski, 1989] as early as 1957. The importance of its implications were not noticed during those years, but Youla and Kucera renewed it in the seventies [Maciejewski, 1989]. For the special case of an open loop stable plant, the implementation can be realized in the Internal Model Control(IMC)-Structure [Morari, 1987]. The IMC-Structure is essentially a open loop design method for closed loop controllers, thereby simplifying the design procedure. A Multivariable controller design method is proposed that unifies the advantages offered by three design approaches/techniques, namely, The Q-Parametrization, The IMC-Structure and The Characteristic Loci Technique. The proposed method is based on controller parametrization. In addition, it retains the engineering insight and simplicity of the IMC-Structure. This is particularly useful in solving complex multivariable problems. The design method was evaluated by its application to the design of a control law for a FLOTATION PROCESS SIMULATOR RIG(FLOTRIG) built by Mr Fisher[Fisher, 1988]. The design of the Multivariable controller was based on a Transfer Function Matrix, G(s), which is a Linear Time Invariant(LTI) model of the FLOTRIG. 2014-10-11T12:06:21Z 2014-10-11T12:06:21Z 1992 Master Thesis Masters MSc http://hdl.handle.net/11427/8356 eng application/pdf University of Cape Town Faculty of Engineering and the Built Environment Department of Electrical Engineering
collection NDLTD
language English
format Dissertation
sources NDLTD
topic Electrical and Electronic Engineering
spellingShingle Electrical and Electronic Engineering
Jacobs, F C
Design of control systems based on Q(Youla)-parmetrization
description Bibliography: leaves 136-145. === This thesis is concerned with the application of a method for control system design based on Youla(Q)-Parametrization. The fundamental concepts of the parametrization method have been used by Newton et al, Franklin and Raggazzini [Maciejewski, 1989] as early as 1957. The importance of its implications were not noticed during those years, but Youla and Kucera renewed it in the seventies [Maciejewski, 1989]. For the special case of an open loop stable plant, the implementation can be realized in the Internal Model Control(IMC)-Structure [Morari, 1987]. The IMC-Structure is essentially a open loop design method for closed loop controllers, thereby simplifying the design procedure. A Multivariable controller design method is proposed that unifies the advantages offered by three design approaches/techniques, namely, The Q-Parametrization, The IMC-Structure and The Characteristic Loci Technique. The proposed method is based on controller parametrization. In addition, it retains the engineering insight and simplicity of the IMC-Structure. This is particularly useful in solving complex multivariable problems. The design method was evaluated by its application to the design of a control law for a FLOTATION PROCESS SIMULATOR RIG(FLOTRIG) built by Mr Fisher[Fisher, 1988]. The design of the Multivariable controller was based on a Transfer Function Matrix, G(s), which is a Linear Time Invariant(LTI) model of the FLOTRIG.
author2 Braae, Martin
author_facet Braae, Martin
Jacobs, F C
author Jacobs, F C
author_sort Jacobs, F C
title Design of control systems based on Q(Youla)-parmetrization
title_short Design of control systems based on Q(Youla)-parmetrization
title_full Design of control systems based on Q(Youla)-parmetrization
title_fullStr Design of control systems based on Q(Youla)-parmetrization
title_full_unstemmed Design of control systems based on Q(Youla)-parmetrization
title_sort design of control systems based on q(youla)-parmetrization
publisher University of Cape Town
publishDate 2014
url http://hdl.handle.net/11427/8356
work_keys_str_mv AT jacobsfc designofcontrolsystemsbasedonqyoulaparmetrization
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