2014 IEEE Conference and Expo Transportation Electrification Asia-Pacific (ITEC Asia-Pacific) 2014
DOI: 10.1109/itec-ap.2014.6941277 View full text |Buy / Rent full text
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“…Results show a good match for the low-resolution HF model and the high-resolution mid-frequency stator winding model that explicitly considers eddy current, flux and current distribution in the conductors. Zhang et al [74] developed a HF model of an interior permanent magnet synchronous machine (IPMSM) using the FEA of the entire stator and rotor geometry. Unlike an induction machine or surface mounted permanent magnet synchronous machine, the low-to mid-frequency DM impedance characteristic varies with the rotor position due to saliency while in the HF range, it is independent of rotor position and only dependent on stator characteristics as shown in Fig.…”
Section: Hf Fea Of Machinesmentioning
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“…Results show a good match for the low-resolution HF model and the high-resolution mid-frequency stator winding model that explicitly considers eddy current, flux and current distribution in the conductors. Zhang et al [74] developed a HF model of an interior permanent magnet synchronous machine (IPMSM) using the FEA of the entire stator and rotor geometry. Unlike an induction machine or surface mounted permanent magnet synchronous machine, the low-to mid-frequency DM impedance characteristic varies with the rotor position due to saliency while in the HF range, it is independent of rotor position and only dependent on stator characteristics as shown in Fig.…”
Section: Hf Fea Of Machinesmentioning
“… Permanent magnet machine's differential impedance (a) FEA determined IPMSM impedance for different rotor positions [74], (b) Measured impedance with and without rotor installed from [75]…”
Section: Hf Machine Modelsmentioning