Automotive

Thorough Review in the Design Stage

Modern automobiles use many electrical devices for various functions including opening and closing windows, positioning and reclining seats, power steering, and engine control. JMAG has contributed to the development of the motors and actuators that are commonly used to control these electrical devices. JMAG is also used for the development of hybrid cars and power electronics essential for FCV and EV which appear to be the key to resolving global warming.
The motors and sensors used for automobiles are required to have high reliability as well as high performance. These requirements must be met within time and cost constraints of a competitive environment. To achieve these goals, it is critical to examine prototypes thoroughly during the design stage. JMAG supports the design process of automobiles by offering excellent modeling and analysis capabilities.




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    • JMAG Users Conference Proceedings

    New Technologies of Motors with Variable Machine Constants and Electronics Motor Systems for an Energy Saving and New Feature

    Kazuto Sakai, Toyo University

    14 Feb 2018

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    Development of Variable Flux Hybrid Excitation Motor

    Takashi Kosaka, Nagoya Institute of Technology

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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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    Takashi Yamada, JSOL Corp.

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    Steven Jordan, Höganäs AB

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    Retrospective of Electric Machines for EV and HEV Traction Applications at General Motors

    Sinisa Jurkovic, GENERAL MOTORS COMPANY

    15 Mar 2017

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    Model-Based Design Meets FEA Simulation – Improving Motor Control Development using High Fidelity Motor Models

    Tony Lennon, The MathWorks, Inc.

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    Jean-Claude Mipo, VALEO EEM

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    Development of JMAG for Model Based Design

    Hiroyuki Sano, JSOL Corp.

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    Improvement of analysis operation using multi-case parallel calculation

    Yoshiyasu Shibayama, Kawasaki Heavy Industries, Ltd.

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    Manabu Kawaji, AISIN SEIKI Co.,Ltd.

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    Hiroyuki Sano, JSOL Corp.

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    Examination to Enhance Efficiency of Axial Gap Motors

    Masatsugu Takemoto, Hokkaido University

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