IPM Motor
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Optimal Design Using Computational Electromagnetism
Hajime Igarashi, Graduate School of Information Science and Technology, Hokkaido University
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sunlight© pump – a small solar powered water pump developed using the JMAG toolchain
Andrea Vezzini, Institute for Energy and Mobility Research – Bern University of Applied Sciences
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Optimization of Electric Motors for Automotive Applications
Stephan Paul, IAV GmbH Chemnitz
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The coupling of JMAG and Simcenter 3D in view Noise and Vibration analysis of Electric Machines
Koen De Langhe, SIEMENS PLM Software
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Development of Motors for SPORT HYBRID SH-AWD for New NSX
Manabu Yazaki, Honda R&D Co., Ltd.
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JMAG implementation on K-computer and accelerating computational speed of electromagnetic field analysis (Introduction of JAMA research activities)
Yoshihiko Sunayama, Japan Automobile Manufacturers Association, Inc.
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Proposal of Electromagnetic Noise-generating Mechanism on Carrier Harmonics
Yoshitake Kamijo, Toshiba Corporation
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Introduction of Coupled Analysis Case Giving New Added Value to Electromagnetic Field Analysis: – Electromagnetic Field – Fluid, Electromagnet…
Hiroshi Kawakami, Prometech Software, Inc.
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Research the Heavy Rare Earth-Free Motor for Hybrid Vehicle
Shingo Soma, Honda R&D Co., Ltd.
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Development of Measurement Method of Three-dimensional Demagnetization Distribution in Permanent Magnets for Motors
Shintaro Araki, Technology Research Association of Magnetic Materials for High-Efficiency Motors (MagHEM)
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The Role of JMAG on Powertrain Development
Albert Li, Gogoro Inc.
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Current Challenges and Future Solutions in Traction Motor Design for Electric Vehicles
Bernd Cebulski, IAV GmbH
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Nissan’s EV Motor Development Strategy and History: Vison of Motor Development Strengthening with JMAG
Shunji Oki, Nissan Motor Co., Ltd.
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[W-MO-23] Measurement of PM Motor Vibration/Noise and Analysis Modeling
While miniaturization and efficiency optimization are always in demand in motor development, demand is also increasing for the reduction of vibration and noise in recent years. As…
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[JAC173] Basic Characteristic Analysis of an IPM Motor
This Application Note demonstrates an analysis in which an IPM motor's cogging torque, torque, magnetic flux density distribution, and iron loss in the stator core are obtained.
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[JAC188] Thermal Demagnetization Analysis of IPM Motors Accounting for Coercive Force Distribution of Magnets
This example presents whether or not the demagnetization region can be smaller by assigning distribution to the coercive force of permanent magnets.