Measurement of Torque Using Leakage Flux for Induction Motors in Electric Vehicles by Non-invasive Method
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Publisher
Springer Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-15-4692-1_38
Reference16 articles.
1. Goktas T et al (2016) Comprehensive analysis of magnet defect fault monitoring through leakage flux. IEEE Trans Magn 53(4):1–10
2. Goktas T, Zafarani M, Lee KW, Akin B, Sculley T (2017) Comprehensive analysis of magnet defect fault monitoring through leakage flux. IEEE Trans Magn 53(4):1–10
3. Ertan HB Keysan O (2009) External search coil as a means of measuring rotor speed of an induction motor. In: International symposium on advanced electromechanical motion systems & electric drives joint symposium, pp. 1–6
4. Henao H, Capolino GA, Martis G (2003) On the stray flux analysis for the detection of the three-phase induction machine faults. In: IAS annual meeting on conference record of the industry applications conference, pp. 1368–1373
5. Kong W, Qu R, Kang M, Huang J, Jing L (2017) Air-gap and yoke flux density optimization for multiphase induction motor based on novel harmonic current injection method. IEEE Trans Ind Appl 53(3):2140–2148
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