Analysis and Implementation of Induction Motor Vector Control Drivers and Current Regulators
碩士 === 淡江大學 === 電機工程學系 === 85 === Due to the inherent disadvantages of DC motors, they gradually have to be replaced by AC motors in industrial applications. However, the mathematical model of induction motors is a highly degree of nonlinear and coupled system. The control of AC motors is con...
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ndltd-TW-085TKU034420082016-07-01T04:15:58Z http://ndltd.ncl.edu.tw/handle/03313977499313174439 Analysis and Implementation of Induction Motor Vector Control Drivers and Current Regulators 感應馬達向量控制器與電流控制器之分析與實現 Hsieh, Cheng-Nan 謝政男 碩士 淡江大學 電機工程學系 85 Due to the inherent disadvantages of DC motors, they gradually have to be replaced by AC motors in industrial applications. However, the mathematical model of induction motors is a highly degree of nonlinear and coupled system. The control of AC motors is considerably more complicated than it DC motors counterpart. Therefor, in this thesis, the analysis of the induction motor drive based on the vector control method, and the design of the current regulators are investigated. In this thesis the vector control theory is first introduced. The stationary frame current regulator is sensitive to the variation of the load so the synchronous frame current regulator is proposed in this thesis. The hysteresis current regulator which is widely used by the industrial world is also introduced. All the control methods proposed in this thesis are analysis and simulated by SIMULINK soft-ware. As to the hardware implementation, the 80196MC single-chip microcomputer is utilized for implementing the indirect rotor flux-oriented control theory. Hsiao, Ying-Tung 蕭瑛東 1997 學位論文 ; thesis 86 zh-TW |
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碩士 === 淡江大學 === 電機工程學系 === 85 ===
Due to the inherent disadvantages of DC motors, they gradually have to be replaced by AC motors in industrial applications. However, the mathematical model of induction motors is a highly degree of nonlinear and coupled system. The control of AC motors is considerably more complicated than it DC motors counterpart. Therefor, in this thesis, the analysis of the induction motor drive based on the vector control method, and the design of the current regulators are investigated.
In this thesis the vector control theory is first introduced. The stationary frame current regulator is sensitive to the variation of the load so the synchronous frame current regulator is proposed in this thesis. The hysteresis current regulator which is widely used by the industrial world is also introduced. All the control methods proposed in this thesis are analysis and simulated by SIMULINK soft-ware. As to the hardware implementation, the 80196MC single-chip microcomputer is utilized for implementing the indirect rotor flux-oriented control theory.
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Hsiao, Ying-Tung |
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Hsiao, Ying-Tung Hsieh, Cheng-Nan 謝政男 |
author |
Hsieh, Cheng-Nan 謝政男 |
spellingShingle |
Hsieh, Cheng-Nan 謝政男 Analysis and Implementation of Induction Motor Vector Control Drivers and Current Regulators |
author_sort |
Hsieh, Cheng-Nan |
title |
Analysis and Implementation of Induction Motor Vector Control Drivers and Current Regulators |
title_short |
Analysis and Implementation of Induction Motor Vector Control Drivers and Current Regulators |
title_full |
Analysis and Implementation of Induction Motor Vector Control Drivers and Current Regulators |
title_fullStr |
Analysis and Implementation of Induction Motor Vector Control Drivers and Current Regulators |
title_full_unstemmed |
Analysis and Implementation of Induction Motor Vector Control Drivers and Current Regulators |
title_sort |
analysis and implementation of induction motor vector control drivers and current regulators |
publishDate |
1997 |
url |
http://ndltd.ncl.edu.tw/handle/03313977499313174439 |
work_keys_str_mv |
AT hsiehchengnan analysisandimplementationofinductionmotorvectorcontroldriversandcurrentregulators AT xièzhèngnán analysisandimplementationofinductionmotorvectorcontroldriversandcurrentregulators AT hsiehchengnan gǎnyīngmǎdáxiàngliàngkòngzhìqìyǔdiànliúkòngzhìqìzhīfēnxīyǔshíxiàn AT xièzhèngnán gǎnyīngmǎdáxiàngliàngkòngzhìqìyǔdiànliúkòngzhìqìzhīfēnxīyǔshíxiàn |
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