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  1. Low-frequency Electromagnetic Field Analysis

    Noboru Kikuchi, University of Michigan

  2. Optimizing Designs with High Throughput Computing

    Brooklin J. Gore, University of Wisconsin-Madison

  3. Variable Characteristics Motors (Matrix motor and CMMF motor)

    Kan Akatsu, Shibaura Institute of Technology

  4. Voltage Boost Type Drive Circuit without Additional Reactor for Switched Reluctance Motor

    Nobukazu Hoshi, Tokyo University of Science

  5. Development of a Ferrite Permanent Magnet Axial Gap Motor with Segmented Rotor Structure

    Masatsugu Takemoto, Hokkaido University

  6. Novel Permanent Magnet Brushless Machines and Applications

    Z.Q. Zhu, University of Sheffield, UK

    • Variable-Magnetic-Flux Motors for Opening up a World of the New Motor-Drive Technology

      Kazuto Sakai, Toyo University

    • Studies on Less Rare-Earth Permanent Magnet Hybrid Excitation Motor with High Power Density

      Takashi Kosaka, Omohi College, Graduate School of Engineering, Nagoya Institute of Technology

    • Latest advancements in noise and vibration simulation in support of electrical motors and power electronics.

      Koen De Langhe,LMS International

    • On the role of Process Integration and Design Optimization in ECO Electric Motor Design; a proposition

      Nick Tzannetakis, Noesis Solutions

    • Multi-Physics Analysis with JMAG-Designer: Current Capabilities and Future Directions

      David Dibben, JSOL Corporation

    • Latest Advancements in Motor Hardware-In-the-Loop Simulation (HILS) based on JMAG-RT

      Simon Abourida, Opal-RT Technologies, Inc.

    • Introducing the modeFRONTIER JMAG-Designer Direct Interface

      Seiji Nishita, Home Appliances Company Panasonic Corporation

    • Implementation and Case Study of High Performance/Low Cost Motor HILS using JMAG-RT

      Shusaku Hayakawa, National Instruments Japan Corporation

    • The Future of JMAG-RT for Furthering Model Based Design

      Toshie FURUBAYASHI, JSOL Corporation

    • Basic Investigation on Magnetic Pole Changing Type Linear Stepping Actuator using Inverse Magnetostrictive Effect. (With JMAG Simulation)

      Masayuki Sugasawa, Systems and Information Engineering Department of Intelligent Interaction, Technologies, University of Tsukuba

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