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基于加权路径内点法的六相电机SVPWM四矢量调制方法

黄守道 赵礼 郑剑 李孟秋 吴公平

电工技术学报2019,Vol.34Issue(2):264-274,11.
电工技术学报2019,Vol.34Issue(2):264-274,11.DOI:10.19595/j.cnki.1000-6753.tces.171552

基于加权路径内点法的六相电机SVPWM四矢量调制方法

Four-Vector Modulation Method for Six-Phase Motor SVPWM Based on Interior Point Algorithm of Weighted Path

黄守道 1赵礼 1郑剑 1李孟秋 1吴公平1

作者信息

  • 1. 湖南大学电气与信息工程学院,长沙 410082
  • 折叠

摘要

Abstract

In this paper, a four-vector modulation method based on Interior Point algorithm of weighted path is proposed for six-phase motor SVPWM, which can suppress the harmonic voltage of the dual shift 30° 6-phase motor and reduce the harmonic loss and operating noise.When the modulation degree is between 0.577 and 0.622, four adjacent maximum voltage vectors are selected for each sector of the fundamental plane.The turn-on time of the four vectors is taken as the optimal amount, the four vectors tracking the expected voltage vector in the fundamental plane is taken as a constraint, and the minimum voltage vector synthesized by the four vectors on the harmonic plane is the objective function.The optimal solution of the four adjacent vectors' turn-on time is obtained by using the Interior Point algorithm of weighted path.The simulation results show that compared with the existing methods, the proposed method reduces the THD of phase voltage from 5% to 3.36% at the modulation of 0.6.The experimental results show that the THD of phase voltage decreases from 21.53% to 14.14%.The proposed method can effectively suppress the harmonic voltage of the inverter, and reduce the harmonic current and operating noise.Moreover, this method can extend to the multi-phase motor system to suppress the harmonic voltage and improve system performance.

关键词

六相逆变器/谐波电压/空间矢量脉宽调制/内点法

Key words

Six-phase inverter/harmonic voltage/space vector pulse width modulation (SVPWM)/interior point algorithm

分类

信息技术与安全科学

引用本文复制引用

黄守道,赵礼,郑剑,李孟秋,吴公平..基于加权路径内点法的六相电机SVPWM四矢量调制方法[J].电工技术学报,2019,34(2):264-274,11.

基金项目

国家自然科学基金重点项目(51737004) (51737004)

国家重点研发计划(2016YFF0203400)资助 (2016YFF0203400)

电工技术学报

OA北大核心CSCDCSTPCD

1000-6753

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