Development and Applications of Periodic Variable Temperature Lifetime Model for Low Voltage Electric Machine

Xuanming Zhou, Yatai Ji, Paolo Giangrande, Weiduo Zhao, Salman Ijaz, Michael Galea

Research output: Journal PublicationArticlepeer-review

Abstract

For electrified transportation applications, the winding insulation of an electrical machine (EM) is often thermally aged by variable temperature profiles. Considering the high-reliability requirement, the over-engineering approach is commonly adopted, although it conflicts with the high-power density demand. Therefore, a reliability-oriented design (RoD) methodology is preferred to find a balance between reliability and performance. In order to apply the RoD, the physics of failure mechanism of EM windings has to be investigated by performing accelerated lifetime tests (ALTs) on the electrical insulation system (EIS). Life prediction of winding is often based on constant temperature ALTs, which would lead to some inaccuracy for the EM working under variable temperature conditions. Thus, a lifetime model that accounts for aging effects caused by variable temperature profiles is needed. In this paper, the ALTs are performed at both constant and variable temperature conditions. Then, a newly developed lifetime model taking into account the thermomechanical stress is introduced based on experiment results and simulations. In this way, the EM life prediction could be obtained and more accurate in any temperature ranges and periods. Meanwhile, the practical application of the lifetime is illustrated through a case study for an aerospace motor. Then, the application paradigm of irregular temperature situation is also illustrated with a counting algorithm. To conclude, this article developed a more comprehensive life model for the variable temperature conditions, which is able to cope with real-world scenarios and improve the EM design.

Original languageEnglish
JournalIEEE Transactions on Transportation Electrification
DOIs
Publication statusAccepted/In press - 2025

Keywords

  • accelerated lifetime test
  • electric machine
  • insulation
  • lifetime model
  • periodic temperature
  • Physics of Failure
  • thermal aging

ASJC Scopus subject areas

  • Automotive Engineering
  • Transportation
  • Energy Engineering and Power Technology
  • Electrical and Electronic Engineering

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