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自适应三管导通机制下模块化开关磁阻电机系统转矩交叉补偿控制

孙庆国 陈李枚 刘旭 李珊瑚 牛峰

中国电机工程学报2024,Vol.44Issue(7):2886-2896,后插31,12.
中国电机工程学报2024,Vol.44Issue(7):2886-2896,后插31,12.DOI:10.13334/j.0258-8013.pcsee.223441

自适应三管导通机制下模块化开关磁阻电机系统转矩交叉补偿控制

Torque Cross Compensation Control of Modular Switched Reluctance Motor Systems Under Adaptive Three-switch Conduction Mechanism

孙庆国 1陈李枚 2刘旭 1李珊瑚 1牛峰2

作者信息

  • 1. 省部共建电工装备可靠性与智能化国家重点实验室(河北工业大学),天津市 北辰区 300401
  • 2. 河北省电磁场与电器可靠性重点实验室(河北工业大学),天津市 北辰区 300401
  • 折叠

摘要

Abstract

The modular converter provides a promising solution towards converter unification and industrial massive production for switched reluctance motor(SRM)applications.To overcome the inherent torque plummet issue caused by the inherent two-phase series excitation and the voltage limitation of the existing modular topologies,an adaptive three-switch conduction-based torque control strategy is proposed in this paper.By establishing a three-step commutation mechanism based on an adaptive interval division principle,a torque cross compensation strategy is proposed.The peak value of the phase current is suppressed and the torque tracking accuracy is improved effectively for the modular SRM drives.Finally,the simulation and experiments are carried out based on a 150 W,three-phase 12/8-pole SRM to verify the feasibility and effectiveness of the proposed scheme.

关键词

开关磁阻电机/三管导通机制/转矩交叉补偿/模块化变换器/转矩脉动抑制

Key words

switched reluctance motor(SRM)/three-switch conduction/torque cross compensation/modular converter/torque ripple suppression

分类

信息技术与安全科学

引用本文复制引用

孙庆国,陈李枚,刘旭,李珊瑚,牛峰..自适应三管导通机制下模块化开关磁阻电机系统转矩交叉补偿控制[J].中国电机工程学报,2024,44(7):2886-2896,后插31,12.

基金项目

国家自然科学基金项目(52207045) (52207045)

河北省省级科技计划(21567605H) (21567605H)

河北省教育厅在读研究生创新能力培养资助项目(CXZZSS2022038).Project Supported by National Natural Science Foundation of China(52207045) (CXZZSS2022038)

S&T Program of Hebei(21567605H) (21567605H)

The Innovation Ability Training Subsidy Project for Postgraduates of Hebei Province of China(CXZZSS2022038). (CXZZSS2022038)

中国电机工程学报

OA北大核心CSTPCD

0258-8013

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