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Transient Magnetic (2D/Axisymmetric)

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  1. [JAC215] Simulation of an IPM Motor with a Delta Connection Using a Control Simulator and JMAG-RT

    In this example, a JMAG-RT model is incorporated into a control/circuit simulator to monitor the circulating current when an IPM motor is being driven.

  2. [JFT174] Workflow and Key Points of Parameter Optimization

    This document is intended for intermediate-level readers who can use the technical materials to improve the accuracy and operational efficiency of the analyses that they are invol…

  3. [JFT169] Run Distributed Processing Efficiently

    This document explains how to configure settings so that the waiting time for analysis is as short as possible by using the PBS option for the remote machine SSH function.

    • [JAC162] Drive Simulation of an SR Motor using a Control Simulator and JMAG-RT

      In this Application Note, after using JMAG-RT to obtain an SR motor’s torque and inductance characteristics, the JMAG-RT model is imported into a circuit/control simulator, voltag…

    • [JFT172] Workflow and Key Points of Parametric Analysis

      It is intended for intermediate-level users who are able to use technical references to improve accuracy and efficiency of their analysis. Therefore, basic information and detaile…

    • [JAC239] Fault Analysis in an IPM Motor

      In this example, we introduce the case study that simulate the fault of an IPM motor using JMAG-RT. The fault simulated in this case study is an open circuit fault which is caused…

    • [JAC243] Voice Coil Motor Control Simulation Using a Control Simulator and JMAG-RT

      In this example, circuit simulation is performed to control the position of a mover by loading a JMAG-RT model for a voice coil motor into a control/circuit simulator.

    • [JFT167] Adding Arbitrary Circuits to JMAG Model Equivalent Circuits

      This document explains how to add arbitrary circuits when running JMAG-RT models with MATLAB/Simulink.

    • [JFT164] Searching for a Parameter Range that Reduces Geometry Collapse During Optimization Calculation (For Ver.22.0 or later)

      This document explains how to use this useful function to search for parameter ranges that reduce geometry collapse during optimization calculations.

    • KOBE STEEL, LTD.

      Application of Thin Wire of Soft Magnetic Pure Iron to AC Solenoid

      Shota Iimura, KOBE STEEL, LTD.

    • Nabtesco Corporation

      Motor Design Study Using Optimization and Thermal Simulation Functions

      Keigo Nakamura, Nabtesco Corporation

    • Aisan Industry Co., Ltd.

      Solenoid Valve Development Using Magnetic Field Analysis Coupled Technology

      Naoki Tsuduki, Aisan Industry Co., Ltd.

    • Tamagawa Seiki Co.,Ltd.

      Design of a High-Density and High-Output Motor Using Optimization Analysis by GA

      Koji Kokue, Tamagawa Seiki Co.,Ltd.

    • Ritsumeikan University

      Automatic Design System for Permanent Magnet Synchronous Motors Using Deep Generative Model

      Yuki Shimizu, Ritsumeikan University

    • Mazda Motor Corporation

      Building the Prediction Process for Motor Noise by Co-Simulation Electromagnetic Circuit and Structure Transfer System

      Makoto Kawaguchi, Mazda Motor Corporation

    • Simple Motor Vibration Prediction Method and Vibration Suppression Appropriate Analysis Case Study

      Isamu Nitta, NSK Ltd.

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