- By:
- Kumar, Praveen ; Ozpineci, Burak
- Page Number:
- 1-5
- Book Title:
- 2026 IEEE Transportation Electrification Conference & Expo (ITEC) & Electric Aircraft Technologies Symposium (EATS) (ITEC+EATS)
- Publication Date:
- September 8, 2026
- Publisher Location:
- IEEE, New Jersey, United States of America
- Conference Name:
- 2026 IEEE Transportation Electrification Conference & Expo (ITEC) & Electric Aircraft Technologies Symposium (EATS) (ITEC+EATS)
- Conference Location:
- Novi, Michigan, United States of America
- Conference Sponsor:
- IEEE
- View DOI Listing:
- https://doi.org/10.1109/ITECEATS66641.2026.11593004
Abstract
This paper presents a unified framework for comparing major electrical machine topologies under identical output and thermal constraints, with emphasis on supply-chain-aware selection among rare-earth-intensive, reduced-rare-earth, and rare-earth-free solutions. Using power factor and air-gap flux density as the principal descriptors, the framework links topology choice to relative size, copper demand, magnet dependence, cost sensitivity, and inertia. To support robust early-stage screening, the deterministic scaling model is combined with uncertainty representation, Monte Carlo scenario propagation, and hesitationaware ranking. The results show that rare-earth-rich machines remain compact and dense, whereas reduced-rare-earth and rare-earth-free alternatives become more attractive under specific material-risk and cost scenarios.