Development of Bidirectional Three-phase Induction Machine Drives for Dynamometer with Energy Recovery

碩士 === 國立臺灣科技大學 === 電機工程系 === 105 === The thesis aims to develop bidirectional three-phase induction machine drives for dynamometer with the feature of energy recovery when the electric motor under test serves as a prime mover. The bidirectional power conversion consists of power converter, dc-link...

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Main Authors: Jian-Lin Lee, 李建霖
Other Authors: Jonq-Chin Hwang
Format: Others
Language:zh-TW
Published: 2017
Online Access:http://ndltd.ncl.edu.tw/handle/g6bjw7
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spelling ndltd-TW-105NTUS54420572019-05-15T23:46:34Z http://ndltd.ncl.edu.tw/handle/g6bjw7 Development of Bidirectional Three-phase Induction Machine Drives for Dynamometer with Energy Recovery 具能量回收之動力計用的雙向三相感應電機驅動器研製 Jian-Lin Lee 李建霖 碩士 國立臺灣科技大學 電機工程系 105 The thesis aims to develop bidirectional three-phase induction machine drives for dynamometer with the feature of energy recovery when the electric motor under test serves as a prime mover. The bidirectional power conversion consists of power converter, dc-link and power inverter. The three-phase induction machine is operated either in motor or generator mode, corresponding to the motoring or braking operation of the electric motor under test. Under motor mode, indirect rotor field-oriented control is introduced. The feedback signals of three-phase current, rotor position and speed are obtained for current vector as well as speed closed-loop controls. Whereas, for induction generator under grid-connected operation, the reversed three-phase power conversion and digital phase-lock loop are designed to calculate the phase angle of power grid to facilitate synchronous frame transformation for the dc voltage and current closed-loop controls. System simulation is given using Matlab/Simulink. A 32-bit digital signal processor, TMS320F28335, is adopted as the control core. Since control strategies are mostly implemented by software program, circuit components are reduced largely. Experimental results show that when the three-phase induction machine is operated in motor mode at 2000 rpm, the power output from the induction motor is 2 kW with the peak phase current and total harmonic distortion (THD) of 12.80 A and 4.31%, respectively, on the motor input; the corresponding values on the grid side are 7.44A and 5.14%. The overall efficiency of the motor drive reaches 76.50%. While in generator mode at 2000 rpm, the mechanical power input to the induction generator is 2 kW, the peak generator phase current and THD are 12.83A and 3.04%, respectively. The corresponding values on the grid side are 5.82A and 4.57%. The overall efficiency of the generator system is 72.69%. The experimental results verify the feasibility of the proposed system. Jonq-Chin Hwang 黃仲欽 2017 學位論文 ; thesis 76 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣科技大學 === 電機工程系 === 105 === The thesis aims to develop bidirectional three-phase induction machine drives for dynamometer with the feature of energy recovery when the electric motor under test serves as a prime mover. The bidirectional power conversion consists of power converter, dc-link and power inverter. The three-phase induction machine is operated either in motor or generator mode, corresponding to the motoring or braking operation of the electric motor under test. Under motor mode, indirect rotor field-oriented control is introduced. The feedback signals of three-phase current, rotor position and speed are obtained for current vector as well as speed closed-loop controls. Whereas, for induction generator under grid-connected operation, the reversed three-phase power conversion and digital phase-lock loop are designed to calculate the phase angle of power grid to facilitate synchronous frame transformation for the dc voltage and current closed-loop controls. System simulation is given using Matlab/Simulink. A 32-bit digital signal processor, TMS320F28335, is adopted as the control core. Since control strategies are mostly implemented by software program, circuit components are reduced largely. Experimental results show that when the three-phase induction machine is operated in motor mode at 2000 rpm, the power output from the induction motor is 2 kW with the peak phase current and total harmonic distortion (THD) of 12.80 A and 4.31%, respectively, on the motor input; the corresponding values on the grid side are 7.44A and 5.14%. The overall efficiency of the motor drive reaches 76.50%. While in generator mode at 2000 rpm, the mechanical power input to the induction generator is 2 kW, the peak generator phase current and THD are 12.83A and 3.04%, respectively. The corresponding values on the grid side are 5.82A and 4.57%. The overall efficiency of the generator system is 72.69%. The experimental results verify the feasibility of the proposed system.
author2 Jonq-Chin Hwang
author_facet Jonq-Chin Hwang
Jian-Lin Lee
李建霖
author Jian-Lin Lee
李建霖
spellingShingle Jian-Lin Lee
李建霖
Development of Bidirectional Three-phase Induction Machine Drives for Dynamometer with Energy Recovery
author_sort Jian-Lin Lee
title Development of Bidirectional Three-phase Induction Machine Drives for Dynamometer with Energy Recovery
title_short Development of Bidirectional Three-phase Induction Machine Drives for Dynamometer with Energy Recovery
title_full Development of Bidirectional Three-phase Induction Machine Drives for Dynamometer with Energy Recovery
title_fullStr Development of Bidirectional Three-phase Induction Machine Drives for Dynamometer with Energy Recovery
title_full_unstemmed Development of Bidirectional Three-phase Induction Machine Drives for Dynamometer with Energy Recovery
title_sort development of bidirectional three-phase induction machine drives for dynamometer with energy recovery
publishDate 2017
url http://ndltd.ncl.edu.tw/handle/g6bjw7
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