An Improved Induction Motor V/f Control Method Capable of Operation at Low Speeds

碩士 === 清雲科技大學 === 電機工程研究所 === 96 === This paper presents an improved induction motor constant V/f control method capable of operation at low speeds. In order to maintain the air gap flux at its rated value to develop rated torque at any frequency, the stator resistance voltage drop compensation and...

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Main Authors: Chih-Chuan Chung, 鍾智全
Other Authors: Chung-Ching Su
Format: Others
Language:zh-TW
Published: 2008
Online Access:http://ndltd.ncl.edu.tw/handle/61365885980742610529
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spelling ndltd-TW-096CYU004420082016-05-16T04:10:16Z http://ndltd.ncl.edu.tw/handle/61365885980742610529 An Improved Induction Motor V/f Control Method Capable of Operation at Low Speeds 一種可操作於低速的改良式感應馬達定V/f控制法 Chih-Chuan Chung 鍾智全 碩士 清雲科技大學 電機工程研究所 96 This paper presents an improved induction motor constant V/f control method capable of operation at low speeds. In order to maintain the air gap flux at its rated value to develop rated torque at any frequency, the stator resistance voltage drop compensation and slip frequency compensation are needed. In this paper, the direct and quadrature component of the stator current in the stator voltage oriented reference frame is calculated to implement the vector compensation for stator resistant drop. The slip frequency compensation is based on linear relationship between slip and torque. In order to reduce the speed steady-state error of the motor, a sliding-mode controller is included in the overall control system. To verify the effectiveness of the proposed method, A simulation verification work is done by MATLAB/Simulink software. Then, a digital signal processor(eZdsp TMS320- LF2407A) based experimental system is developed testing the performances of the drive system. The experimental results, show that good steady and transient response, both in no-load and loading conditions, are obtained by the proposed method. Chung-Ching Su 蘇仲清 2008 學位論文 ; thesis 88 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 清雲科技大學 === 電機工程研究所 === 96 === This paper presents an improved induction motor constant V/f control method capable of operation at low speeds. In order to maintain the air gap flux at its rated value to develop rated torque at any frequency, the stator resistance voltage drop compensation and slip frequency compensation are needed. In this paper, the direct and quadrature component of the stator current in the stator voltage oriented reference frame is calculated to implement the vector compensation for stator resistant drop. The slip frequency compensation is based on linear relationship between slip and torque. In order to reduce the speed steady-state error of the motor, a sliding-mode controller is included in the overall control system. To verify the effectiveness of the proposed method, A simulation verification work is done by MATLAB/Simulink software. Then, a digital signal processor(eZdsp TMS320- LF2407A) based experimental system is developed testing the performances of the drive system. The experimental results, show that good steady and transient response, both in no-load and loading conditions, are obtained by the proposed method.
author2 Chung-Ching Su
author_facet Chung-Ching Su
Chih-Chuan Chung
鍾智全
author Chih-Chuan Chung
鍾智全
spellingShingle Chih-Chuan Chung
鍾智全
An Improved Induction Motor V/f Control Method Capable of Operation at Low Speeds
author_sort Chih-Chuan Chung
title An Improved Induction Motor V/f Control Method Capable of Operation at Low Speeds
title_short An Improved Induction Motor V/f Control Method Capable of Operation at Low Speeds
title_full An Improved Induction Motor V/f Control Method Capable of Operation at Low Speeds
title_fullStr An Improved Induction Motor V/f Control Method Capable of Operation at Low Speeds
title_full_unstemmed An Improved Induction Motor V/f Control Method Capable of Operation at Low Speeds
title_sort improved induction motor v/f control method capable of operation at low speeds
publishDate 2008
url http://ndltd.ncl.edu.tw/handle/61365885980742610529
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