A compact three-phase single-input/dual-output matrix converter
This paper presents a novel matrix converter with one ac input and two ac outputs. The presented topology is based on the traditional indirect matrix converter, but with its rear-end six-switch inverter replaced by a compact nine-switch inverter. With only three extra switches added, the proposed co...
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sg-ntu-dr.10356-959452020-03-07T14:02:45Z A compact three-phase single-input/dual-output matrix converter Liu, Xiong Wang, Peng Loh, Poh Chiang Blaabjerg, Frede School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering This paper presents a novel matrix converter with one ac input and two ac outputs. The presented topology is based on the traditional indirect matrix converter, but with its rear-end six-switch inverter replaced by a compact nine-switch inverter. With only three extra switches added, the proposed converter can produce two sets of three-phase ac outputs, whose amplitudes, frequencies, and phases can appropriately be regulated. Features such as sinusoidal input and outputs, unity input power factor and minimum commutation count are all retained by the proposed topology, despite having an additional output. Its modulation is realized by the computationally less intensive carrier-based method, whose unique carrier requirements can easily be managed within a programmable logic device. Mathematical proof for validating sinusoidal input and outputs achieved by this modulation technique is also discussed, before being verified in simulation and experimentally, together with other findings. 2013-07-15T07:30:10Z 2019-12-06T19:23:35Z 2013-07-15T07:30:10Z 2019-12-06T19:23:35Z 2011 2011 Journal Article Liu, X., Wang, P., Loh, P. C., & Blaabjerg, F. (2012). A Compact Three-Phase Single-Input/Dual-Output Matrix Converter. IEEE Transactions on Industrial Electronics, 59(1), 6-16. 0278-0046 https://hdl.handle.net/10356/95945 http://hdl.handle.net/10220/11445 10.1109/TIE.2011.2146216 en IEEE transactions on industrial electronics © 2011 IEEE. |
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DRNTU::Engineering::Electrical and electronic engineering Liu, Xiong Wang, Peng Loh, Poh Chiang Blaabjerg, Frede A compact three-phase single-input/dual-output matrix converter |
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This paper presents a novel matrix converter with one ac input and two ac outputs. The presented topology is based on the traditional indirect matrix converter, but with its rear-end six-switch inverter replaced by a compact nine-switch inverter. With only three extra switches added, the proposed converter can produce two sets of three-phase ac outputs, whose amplitudes, frequencies, and phases can appropriately be regulated. Features such as sinusoidal input and outputs, unity input power factor and minimum commutation count are all retained by the proposed topology, despite having an additional output. Its modulation is realized by the computationally less intensive carrier-based method, whose unique carrier requirements can easily be managed within a programmable logic device. Mathematical proof for validating sinusoidal input and outputs achieved by this modulation technique is also discussed, before being verified in simulation and experimentally, together with other findings. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Liu, Xiong Wang, Peng Loh, Poh Chiang Blaabjerg, Frede |
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Article |
author |
Liu, Xiong Wang, Peng Loh, Poh Chiang Blaabjerg, Frede |
author_sort |
Liu, Xiong |
title |
A compact three-phase single-input/dual-output matrix converter |
title_short |
A compact three-phase single-input/dual-output matrix converter |
title_full |
A compact three-phase single-input/dual-output matrix converter |
title_fullStr |
A compact three-phase single-input/dual-output matrix converter |
title_full_unstemmed |
A compact three-phase single-input/dual-output matrix converter |
title_sort |
compact three-phase single-input/dual-output matrix converter |
publishDate |
2013 |
url |
https://hdl.handle.net/10356/95945 http://hdl.handle.net/10220/11445 |
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1681034242288517120 |