MATLAB/Simulink

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  1. [JAC245] Injector Control and Eddy Current Effects

    In this example, an example of evaluating the difference in responsiveness of an injector when eddy currents are taken into account or not is presented.

  2. [L-MB-55] High Fidelity Behavior Models Generation for Control/Circuit Simulation using JMAG-RT

    The electrification in the automotive industries produces many new components with the complicated circuit network. For example, the three phase motors have been commonly used in …

  3. [L-MU-93] JMAG/Adams/Simulink Coupled Vehicle Drive Simulation

    Generally, it is said that drive motors used in electric cars have less vibration than engines, however, vibration caused by torque ripple may be transmitted to the entire vehicle…

  4. [L-MB-28] The Incorporation of JMAG into Model Based Design

    The JMAG-provided plant model (JMAG-RT) simulates the characteristics of an actual machine with high-fidelity information, acquired by means of FEA, and realizes a highly reliable…

  5. [L-MB-32] Simulating Responsiveness of Electric Machinery During Control with High Accuracy Using a Direct Coupling Analysis

    For machines requiring high-speed responsiveness for controllers such as solenoid valves and injectors, level of accuracy required in simulation have increased following the advan…

  6. [L-MB-33]Supporting Motor Drive Development with a JMAG-MATLAB/Simulink Coupling

    Together with Mathworks, the company that develops MATLAB/Simulink (hereafter referred to as "Simulink"), JMAG strongly supports model-based development (hereafter referred to as …

  7. [JFT059] How to Account for Harmonic Current (JMAG-RT)

    This document explains how to use harmonic current waveforms in magnetic field analyses when obtained from running circuit simulation using plant models (JMAG-RT models).

  8. [JFT038] Automation of JMAG using MATLAB

    In this document, a script is introduced that automatically executes a MATLAB code file from MATLAB, displays the results in MATLAB after launching JMAG-Designer, and then closes …

    • Electromagnetic Force Analysis of Permanent Magnet Synchronous Motor Driven by PWM Inverter

      Katsuhiro Hoshino, Hitachi Automotive Systems, Ltd.

    • Low Oscillation Actuator for Force-controlled Medical Robot Arm

      Tetsuharu Fukushima, Sony Imaging Products & Solutions Inc.

    • JMAG-RT Case Studies Using 3D Analysis

      Natsumi Tamura, Mitsuba Corporation

    • [JFT080] Direct Coupling between MATLAB/Simulink and JMAG

      In this document, direct coupling between MATLAB/Simulink and JMAG is presented.

    • Analysis of Multi-Degree-of-Freedom Spherical Actuators in JMAG

      Hirotsugu Fusayasu, Panasonic Corporation

    • Fuel Consumption Simulations for Vehicles Equipped with HUB Bearings with Motor Generator (eHUB)

      Mitsuo Kawamura, NTN Corporation

    • Case Study of Developing an IPM Motor Drive System with Model-Based Development (MBD) – Using JMAG-RT and HILS –

      Daisuke Mitsuoka, Shimadzu Corporation

    • [RTML-040] PMSM/SPM Constant rating 1(kW) 6-phase

      Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 53.4(mm) | Height: 37.5(mm) | Voltage/Current: DC100(V)/10(A) | Rotor/Mover: SPM | Average torque: 4(N·m)

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