A Constant Current Based Interior Permanent Magnet (IPM) Synchronous Motor Drive Control Strategy

Yunpeng Si, Yifu Liu, Chunhui Liu, Zhengda Zhang, Mengzhi Wang, Qin Lei

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Interior Permanent Magnet (IPM) machines are widely used in automotive applications for their wide-speed range operation and low maintenance cost. The proposed Constant Current based IPM motor drive control strategy can achieve seamless transition between non-field-weakening and field-weakening regions while keeping a large output EM torque. The detailed control block diagram is presented and a pump-back system is proposed to verify control effectiveness. PLECS simulations have been conducted to compare the performance of the proposed control strategy with the curve fitting based method proposed in the previous work. A 5 kW three-phase motor drive inverter prototype has been built based on current industrial requirements, and the prototype power density has reached 92 W/inch3. Meanwhile, Insulated Metal Substrate (IMS) board and single-layer layout technique are used for better heat dissipation. Pump-back system experiments have been performed and the results are presented.

Original languageEnglish (US)
Title of host publicationECCE 2020 - IEEE Energy Conversion Congress and Exposition
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages2641-2648
Number of pages8
ISBN (Electronic)9781728158266
DOIs
StatePublished - Oct 11 2020
Event12th Annual IEEE Energy Conversion Congress and Exposition, ECCE 2020 - Virtual, Detroit, United States
Duration: Oct 11 2020Oct 15 2020

Publication series

NameECCE 2020 - IEEE Energy Conversion Congress and Exposition

Conference

Conference12th Annual IEEE Energy Conversion Congress and Exposition, ECCE 2020
Country/TerritoryUnited States
CityVirtual, Detroit
Period10/11/2010/15/20

Keywords

  • constant current
  • field-weakening
  • IMS board
  • IPM machine
  • pump-back system

ASJC Scopus subject areas

  • Electrical and Electronic Engineering
  • Mechanical Engineering
  • Control and Optimization
  • Energy Engineering and Power Technology

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