Sensorless Vector Control for Current-Mode Induction Motors Based on Fuzzy Approach

碩士 === 中原大學 === 電機工程研究所 === 93 === This thesis presents a current-mode concept and a design method for sensorless induction motors to achieve speed tracking. First, the traditional ideal current loop is replaced by the assumption of allowing a bounded stator voltage and a finite absolute-integral of...

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Main Authors: Wei-Je Chen, 陳偉哲
Other Authors: Kuang-Yow Lian
Format: Others
Language:en_US
Published: 2005
Online Access:http://ndltd.ncl.edu.tw/handle/z5z2u2
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spelling ndltd-TW-093CYCU54420412019-05-15T20:05:51Z http://ndltd.ncl.edu.tw/handle/z5z2u2 Sensorless Vector Control for Current-Mode Induction Motors Based on Fuzzy Approach 以模糊方法為基礎之無感測器電流型感應馬達之向量控制 Wei-Je Chen 陳偉哲 碩士 中原大學 電機工程研究所 93 This thesis presents a current-mode concept and a design method for sensorless induction motors to achieve speed tracking. First, the traditional ideal current loop is replaced by the assumption of allowing a bounded stator voltage and a finite absolute-integral of current tracking error. From this practical current-mode model for the induction motors is used for the controller design. Our objective is to develop a fuzzy observer-based, controller for speed tracking. Second, the fuzzy observer is addressed to estimate the immeasurable states of rotor flux and rotor electric angular speed, whereby zero estimation error is concluded. Third, the controller is proposed by using the design concept of virtual desired variables. In light of this concept, the concept of vector control is presented. The vector control and the fuzzy observer are independently designed. According to the derived stability criterion, the observer gains and control gains are obtained by solving linear matrix inequalities. Finally practical simulations and experiments are found to be consistent with theoretical derivations. Kuang-Yow Lian 練光祐 2005 學位論文 ; thesis 56 en_US
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language en_US
format Others
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description 碩士 === 中原大學 === 電機工程研究所 === 93 === This thesis presents a current-mode concept and a design method for sensorless induction motors to achieve speed tracking. First, the traditional ideal current loop is replaced by the assumption of allowing a bounded stator voltage and a finite absolute-integral of current tracking error. From this practical current-mode model for the induction motors is used for the controller design. Our objective is to develop a fuzzy observer-based, controller for speed tracking. Second, the fuzzy observer is addressed to estimate the immeasurable states of rotor flux and rotor electric angular speed, whereby zero estimation error is concluded. Third, the controller is proposed by using the design concept of virtual desired variables. In light of this concept, the concept of vector control is presented. The vector control and the fuzzy observer are independently designed. According to the derived stability criterion, the observer gains and control gains are obtained by solving linear matrix inequalities. Finally practical simulations and experiments are found to be consistent with theoretical derivations.
author2 Kuang-Yow Lian
author_facet Kuang-Yow Lian
Wei-Je Chen
陳偉哲
author Wei-Je Chen
陳偉哲
spellingShingle Wei-Je Chen
陳偉哲
Sensorless Vector Control for Current-Mode Induction Motors Based on Fuzzy Approach
author_sort Wei-Je Chen
title Sensorless Vector Control for Current-Mode Induction Motors Based on Fuzzy Approach
title_short Sensorless Vector Control for Current-Mode Induction Motors Based on Fuzzy Approach
title_full Sensorless Vector Control for Current-Mode Induction Motors Based on Fuzzy Approach
title_fullStr Sensorless Vector Control for Current-Mode Induction Motors Based on Fuzzy Approach
title_full_unstemmed Sensorless Vector Control for Current-Mode Induction Motors Based on Fuzzy Approach
title_sort sensorless vector control for current-mode induction motors based on fuzzy approach
publishDate 2005
url http://ndltd.ncl.edu.tw/handle/z5z2u2
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