Modulated model predictive current control of an indirect matrix converter with active damping

A modulated model predictive control (M²PC) scheme for an indirect matrix converter is proposed in this paper, including an active damping method to mitigate the input filter resonance. The control strategy allows the instantaneous power control and the output current control at the same time, opera...

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Main Authors: Di, Zhengfei, Rivera, Marco, Dan, Hanbing, Tarisciotti, Luca, Zhang, Kehan, Xu, Demin, Wheeler, Patrick
Format: Conference or Workshop Item
Published: 2017
Subjects:
Online Access:https://eprints.nottingham.ac.uk/49336/
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author Di, Zhengfei
Rivera, Marco
Dan, Hanbing
Tarisciotti, Luca
Zhang, Kehan
Xu, Demin
Wheeler, Patrick
author_facet Di, Zhengfei
Rivera, Marco
Dan, Hanbing
Tarisciotti, Luca
Zhang, Kehan
Xu, Demin
Wheeler, Patrick
author_sort Di, Zhengfei
building Nottingham Research Data Repository
collection Online Access
description A modulated model predictive control (M²PC) scheme for an indirect matrix converter is proposed in this paper, including an active damping method to mitigate the input filter resonance. The control strategy allows the instantaneous power control and the output current control at the same time, operating at a fixed frequency. An optimal switching pattern is used to emulate the desired waveform quality features of space vector modulation and achieve zero-current switching operations. The active damping technique emulates a virtual resistor which damps the filter resonance. Simulation results present a good tracking to the output-current references, unity input displacement power factor, the low input-current distortions and a reduced common-mode voltage (CMV).
first_indexed 2025-11-14T20:12:25Z
format Conference or Workshop Item
id nottingham-49336
institution University of Nottingham Malaysia Campus
institution_category Local University
last_indexed 2025-11-14T20:12:25Z
publishDate 2017
recordtype eprints
repository_type Digital Repository
spelling nottingham-493362020-05-04T19:14:27Z https://eprints.nottingham.ac.uk/49336/ Modulated model predictive current control of an indirect matrix converter with active damping Di, Zhengfei Rivera, Marco Dan, Hanbing Tarisciotti, Luca Zhang, Kehan Xu, Demin Wheeler, Patrick A modulated model predictive control (M²PC) scheme for an indirect matrix converter is proposed in this paper, including an active damping method to mitigate the input filter resonance. The control strategy allows the instantaneous power control and the output current control at the same time, operating at a fixed frequency. An optimal switching pattern is used to emulate the desired waveform quality features of space vector modulation and achieve zero-current switching operations. The active damping technique emulates a virtual resistor which damps the filter resonance. Simulation results present a good tracking to the output-current references, unity input displacement power factor, the low input-current distortions and a reduced common-mode voltage (CMV). 2017-10-29 Conference or Workshop Item PeerReviewed Di, Zhengfei, Rivera, Marco, Dan, Hanbing, Tarisciotti, Luca, Zhang, Kehan, Xu, Demin and Wheeler, Patrick (2017) Modulated model predictive current control of an indirect matrix converter with active damping. In: 43rd Annual Conference of the IEEE Industrial Electronics Society - IECON 2017, 29 Oct-1 Nov 2017, Beijing, China. Matrix converter modulated model predictive control unity input displacement power factor active damping http://ieeexplore.ieee.org/abstract/document/8216223/
spellingShingle Matrix converter
modulated model predictive control
unity input displacement power factor
active damping
Di, Zhengfei
Rivera, Marco
Dan, Hanbing
Tarisciotti, Luca
Zhang, Kehan
Xu, Demin
Wheeler, Patrick
Modulated model predictive current control of an indirect matrix converter with active damping
title Modulated model predictive current control of an indirect matrix converter with active damping
title_full Modulated model predictive current control of an indirect matrix converter with active damping
title_fullStr Modulated model predictive current control of an indirect matrix converter with active damping
title_full_unstemmed Modulated model predictive current control of an indirect matrix converter with active damping
title_short Modulated model predictive current control of an indirect matrix converter with active damping
title_sort modulated model predictive current control of an indirect matrix converter with active damping
topic Matrix converter
modulated model predictive control
unity input displacement power factor
active damping
url https://eprints.nottingham.ac.uk/49336/
https://eprints.nottingham.ac.uk/49336/