Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid
The use of the a new control method for grid-connected inverters for reducing the output current harmonic distortion in a wide range of grid-connected distributed generation applications, including wind turbine (WT) and microturbine (MT) inverters is proposed in this paper. The propose control metho...
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2016
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my.utm.691452017-11-20T08:52:15Z http://eprints.utm.my/id/eprint/69145/ Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid Mohd. Zin, Abdullah Asuhaimi Naderipour, Amirreza Habibuddin, Mohd. Hafiz Khajehzadeh, Alimorad TK Electrical engineering. Electronics Nuclear engineering The use of the a new control method for grid-connected inverters for reducing the output current harmonic distortion in a wide range of grid-connected distributed generation applications, including wind turbine (WT) and microturbine (MT) inverters is proposed in this paper. The propose control method designed to eliminate main harmonics in microgrid (MG) and between MG and point of common coupling (PCC) and responsible for the correction of the system unbalance. Another advantage of the proposed control method is that it can be easily adopted into the distributed generation (DG) control system without the installation of extra hardware. The proposed control method is comprised of the synchronous reference frame method (SRF). Results from the proposed control method are provided to show the feasibility of the proposed approach. Asian Research Publishing Network 2016 Article PeerReviewed Mohd. Zin, Abdullah Asuhaimi and Naderipour, Amirreza and Habibuddin, Mohd. Hafiz and Khajehzadeh, Alimorad (2016) Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid. ARPN Journal of Engineering and Applied Sciences, 11 (17). pp. 10575-10581. ISSN 1819-6608 http://www.scopus.com |
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TK Electrical engineering. Electronics Nuclear engineering Mohd. Zin, Abdullah Asuhaimi Naderipour, Amirreza Habibuddin, Mohd. Hafiz Khajehzadeh, Alimorad Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid |
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The use of the a new control method for grid-connected inverters for reducing the output current harmonic distortion in a wide range of grid-connected distributed generation applications, including wind turbine (WT) and microturbine (MT) inverters is proposed in this paper. The propose control method designed to eliminate main harmonics in microgrid (MG) and between MG and point of common coupling (PCC) and responsible for the correction of the system unbalance. Another advantage of the proposed control method is that it can be easily adopted into the distributed generation (DG) control system without the installation of extra hardware. The proposed control method is comprised of the synchronous reference frame method (SRF). Results from the proposed control method are provided to show the feasibility of the proposed approach. |
format |
Article |
author |
Mohd. Zin, Abdullah Asuhaimi Naderipour, Amirreza Habibuddin, Mohd. Hafiz Khajehzadeh, Alimorad |
author_facet |
Mohd. Zin, Abdullah Asuhaimi Naderipour, Amirreza Habibuddin, Mohd. Hafiz Khajehzadeh, Alimorad |
author_sort |
Mohd. Zin, Abdullah Asuhaimi |
title |
Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid |
title_short |
Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid |
title_full |
Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid |
title_fullStr |
Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid |
title_full_unstemmed |
Design a new compensation control strategy for grid connected wt and mt inverters at the microgrid |
title_sort |
design a new compensation control strategy for grid connected wt and mt inverters at the microgrid |
publisher |
Asian Research Publishing Network |
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2016 |
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http://eprints.utm.my/id/eprint/69145/ http://www.scopus.com |
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