Design of Rotor Resistance Estimator and Adaptive Position Controller for Induction Motors

碩士 === 國立虎尾科技大學 === 創意工程與精密科技研究所 === 100 === This thesis proposes the parameters estimation and position control of induction motors by using the composite adaptation scheme. Firstly, in the rotor reference frame, the input-output linearization theory was employed to decouple the mechanical rotor po...

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Main Authors: Yan-Siang Syu, 許硯翔
Other Authors: 陳進益
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/znm53z
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spelling ndltd-TW-100NYPI57850052019-09-21T03:32:08Z http://ndltd.ncl.edu.tw/handle/znm53z Design of Rotor Resistance Estimator and Adaptive Position Controller for Induction Motors 感應馬達之轉子電阻估測器與適應位置控制器設計 Yan-Siang Syu 許硯翔 碩士 國立虎尾科技大學 創意工程與精密科技研究所 100 This thesis proposes the parameters estimation and position control of induction motors by using the composite adaptation scheme. Firstly, in the rotor reference frame, the input-output linearization theory was employed to decouple the mechanical rotor position and the rotor flux amplitude at the transient state. An open-loop current model rotor flux observer estimates the flux, and then the adaptation laws estimate the rotor resistance, moment of inertia, viscous friction coefficient, and load torque. The passive properties of the flux observer, rotor resistance estimator, and the adaptive position controller were analyzed based on the passivity theorem. According to the properties, the overall position control system is proven to be globally stable without using Lyapunov-type arguments. Experimental results are finally provided to show that the proposed method is robust to variations of the motor mechanical parameters, rotor resistance, and load torque disturbances. Moreover, good position tracking response and parameters estimating characteristic can be obtained. 陳進益 2012 學位論文 ; thesis 48 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立虎尾科技大學 === 創意工程與精密科技研究所 === 100 === This thesis proposes the parameters estimation and position control of induction motors by using the composite adaptation scheme. Firstly, in the rotor reference frame, the input-output linearization theory was employed to decouple the mechanical rotor position and the rotor flux amplitude at the transient state. An open-loop current model rotor flux observer estimates the flux, and then the adaptation laws estimate the rotor resistance, moment of inertia, viscous friction coefficient, and load torque. The passive properties of the flux observer, rotor resistance estimator, and the adaptive position controller were analyzed based on the passivity theorem. According to the properties, the overall position control system is proven to be globally stable without using Lyapunov-type arguments. Experimental results are finally provided to show that the proposed method is robust to variations of the motor mechanical parameters, rotor resistance, and load torque disturbances. Moreover, good position tracking response and parameters estimating characteristic can be obtained.
author2 陳進益
author_facet 陳進益
Yan-Siang Syu
許硯翔
author Yan-Siang Syu
許硯翔
spellingShingle Yan-Siang Syu
許硯翔
Design of Rotor Resistance Estimator and Adaptive Position Controller for Induction Motors
author_sort Yan-Siang Syu
title Design of Rotor Resistance Estimator and Adaptive Position Controller for Induction Motors
title_short Design of Rotor Resistance Estimator and Adaptive Position Controller for Induction Motors
title_full Design of Rotor Resistance Estimator and Adaptive Position Controller for Induction Motors
title_fullStr Design of Rotor Resistance Estimator and Adaptive Position Controller for Induction Motors
title_full_unstemmed Design of Rotor Resistance Estimator and Adaptive Position Controller for Induction Motors
title_sort design of rotor resistance estimator and adaptive position controller for induction motors
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/znm53z
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