Multiaverage Random Switching Frequency Space Vector Pulsewidth Modulation Strategy for High-Order Harmonics Dispersion

A multiaverage random switching frequency space vector pulsewidth modulation (MARSF-SVPWM) strategy is proposed in this article, in order to further disperse the high-order harmonics concentrated at the switching frequency and its integer multiplies in the output voltage of the inverter. The propose...

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Veröffentlicht in:IEEE journal of emerging and selected topics in power electronics 2023-08, Vol.11 (4), p.4010-4021
Hauptverfasser: Bu, Feifei, Ma, Beijia, Du, Renhui, Sun, Tiankui, Chu, Jianbo, Liu, Qi, Qin, Haihong, Deaconu, Sorin Ioan
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container_issue 4
container_start_page 4010
container_title IEEE journal of emerging and selected topics in power electronics
container_volume 11
creator Bu, Feifei
Ma, Beijia
Du, Renhui
Sun, Tiankui
Chu, Jianbo
Liu, Qi
Qin, Haihong
Deaconu, Sorin Ioan
description A multiaverage random switching frequency space vector pulsewidth modulation (MARSF-SVPWM) strategy is proposed in this article, in order to further disperse the high-order harmonics concentrated at the switching frequency and its integer multiplies in the output voltage of the inverter. The proposed strategy divides the fundamental period equally, with different stages corresponding to different average switching frequencies and spread-spectrum ranges, in contrast with the conventional random switching frequency space vector pulsewidth modulation (RSF-SVPWM), under the premise of maintaining the same overall average switching frequency and spread-spectrum range. The simulation and experimental results demonstrate that, even in the case of a narrow spread-spectrum range, the proposed MARSF-SVPWM strategy can obtain a better effect of high-order harmonic dispersion.
doi_str_mv 10.1109/JESTPE.2023.3266491
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subjects Dispersion
Higher harmonics
Modulation
Pulse duration
Switching
title Multiaverage Random Switching Frequency Space Vector Pulsewidth Modulation Strategy for High-Order Harmonics Dispersion
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