DOE OSTI · 3740667
A Unified Scaling Framework for Comparative Analysis of Major Electrical Machine Topologies
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.
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Kumar, Praveen [ORNL] (ORCID:0000000291877857), Ozpineci, Burak [ORNL] (ORCID:0000000216723348). 2026-07-01. A Unified Scaling Framework for Comparative Analysis of Major Electrical Machine Topologies. https://doi.org/10.1109/iteceats66641.2026.11593004
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