MPPT Control for Hybrid Wind Power Generation Systems
碩士 === 中原大學 === 電機工程研究所 === 101 === The purpose of this thesis is to design a maximum power point tracking (MPPT) controller for wind power generation systems in a hybrid energy structure. First, a rotor speed estimation is designed for the wind power generation system for speed sensorless MPPT cont...
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ndltd-TW-101CYCU54420102016-03-23T04:13:57Z http://ndltd.ncl.edu.tw/handle/38903316412187895944 MPPT Control for Hybrid Wind Power Generation Systems 混合式風力發電最大功率點追蹤控制 Yi-Huan Chen 陳以桓 碩士 中原大學 電機工程研究所 101 The purpose of this thesis is to design a maximum power point tracking (MPPT) controller for wind power generation systems in a hybrid energy structure. First, a rotor speed estimation is designed for the wind power generation system for speed sensorless MPPT control. Then, based on the estimated generator speed , a reference current for maximum power point operation is obtained. Accordingly, a boost converter along with sliding mode current controller is used for the MPPT. In detail, the super-twisting sliding mode observer and the second-order sliding mode observer are designed for generator speed estimation. The two observers assure finite-time convergent stability. As a result, the reference current of the maximum power point can be determined on-line. For the MPPT, the sliding mode current controller is developed for the boost converter which is parallel with the other boost converter from battery source. In the hybrid energy structure, the wind power system is always assured in the maximum power operation while the battery source will compensate the lacked power. To verify the validty of the developed system, the simulations and experiments are done by Matlab software and dSPACE DS1103 DSP card. Finally, some comparisons are performed in this thesis. Chian-Song Chiu 邱謙松 2013 學位論文 ; thesis 77 zh-TW |
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碩士 === 中原大學 === 電機工程研究所 === 101 === The purpose of this thesis is to design a maximum power point tracking (MPPT) controller for wind power generation systems in a hybrid energy structure. First, a rotor speed estimation is designed for the wind power generation system for speed sensorless MPPT control. Then, based on the estimated generator speed , a reference current for maximum power point operation is obtained. Accordingly, a boost converter along with sliding mode current controller is used for the MPPT. In detail, the super-twisting sliding mode observer and the second-order sliding mode observer are designed for generator speed estimation. The two observers assure finite-time convergent stability. As a result, the reference current of the maximum power point can be determined on-line. For the MPPT, the sliding mode current controller is developed for the boost converter which is parallel with the other boost converter from battery source. In the hybrid energy structure, the wind power system is always assured in the maximum power operation while the battery source will compensate the lacked power. To verify the validty of the developed system, the simulations and experiments are done by Matlab software and dSPACE DS1103 DSP card. Finally, some comparisons are performed in this thesis.
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author2 |
Chian-Song Chiu |
author_facet |
Chian-Song Chiu Yi-Huan Chen 陳以桓 |
author |
Yi-Huan Chen 陳以桓 |
spellingShingle |
Yi-Huan Chen 陳以桓 MPPT Control for Hybrid Wind Power Generation Systems |
author_sort |
Yi-Huan Chen |
title |
MPPT Control for Hybrid Wind Power Generation Systems |
title_short |
MPPT Control for Hybrid Wind Power Generation Systems |
title_full |
MPPT Control for Hybrid Wind Power Generation Systems |
title_fullStr |
MPPT Control for Hybrid Wind Power Generation Systems |
title_full_unstemmed |
MPPT Control for Hybrid Wind Power Generation Systems |
title_sort |
mppt control for hybrid wind power generation systems |
publishDate |
2013 |
url |
http://ndltd.ncl.edu.tw/handle/38903316412187895944 |
work_keys_str_mv |
AT yihuanchen mpptcontrolforhybridwindpowergenerationsystems AT chényǐhuán mpptcontrolforhybridwindpowergenerationsystems AT yihuanchen hùnhéshìfēnglìfādiànzuìdàgōnglǜdiǎnzhuīzōngkòngzhì AT chényǐhuán hùnhéshìfēnglìfādiànzuìdàgōnglǜdiǎnzhuīzōngkòngzhì |
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