MATLAB/Simulink

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  1. [JAC291] Control Simulation of Switching Number of Poles in a 6-Phase Induction Machine

    In this document, the behavior of a 6-phase induction motor during the switching of the number of poles is evaluated by simulation.

  2. [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.

  3. [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…

  4. [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.

  5. [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.

  6. [JFT012] JMAG-RT Model Generation of Wound-Field Synchronous Motor

    This document shows how to generate a JMAG-RT model of a wound-field synchronous motor and how to execute control simulation using a JMAG-RT model in MATLAB/Simulink.

  7. [JFT077] Creating JMAG-RT Models with Generic Circuit Topology

    This document describes the method for creating plant models (JMAG-RT models) with generic circuit topology.

  8. [W-MB-157] Evaluation of the Effect of Resolver Eccentricity on PM Motor Torque Ripple Control

    VR-type resolvers are widely used as angle sensors to control the rotation of traction motors for electric vehicles and hybrid vehicles.

  9. [W-MB-151] Accuracy of Motor Plant Model Required for Control Calibration

    Control calibration is time-consuming work because it is carried out for every operating point using the actual machine.

  10. [W-MB-155] Accuracy of 6-Phase Motor Plant Models for Detecting Faults at Disconnections

    Multiphase motors have become widely used, and a fail-safe function can be realized by providing a system with redundancy.

  11. [W-MB-152] Accuracy of Motor Plant Model Required for ECU testing

    ECU testing is performed under various conditions from the normal to the abnormal system.

  12. [W-MB-153] Accuracy and Speed Verification of Motor Plant Models Accounting for Spatial Harmonics

    This document uses JMAG-RT, which is a type of plant model, to show the relationship between the resolution and accuracy of each axis (mechanical angle, current amplitude, and cur…

  13. [W-MB-156] Improving Motor Plant Model Accuracy by Accounting for Harmonic Iron Loss

    Because of the acceleration of the motor and the effect of the PWM drive, it is becoming more important to account for loss in order to improve accuracy even for analysis using mo…

  14. [JAC213] Circuit/Control Simulation of a Wound-Field Synchronous Motor

    In this example, JMAG-RT is used to obtain the torque of a wound-field synchronous motor (below WFSM) and the coil inductance current dependence, and the spatial harmonic componen…

  15. [JFT147] Creating a Lookup Table Using Parametric Analysis

    This document explains how to run parametric analysis in JMAG-Designer and register it as a lookup table for MATLAB.

    • [RTML-043] SRM_01 3-phase

      Type: SRM | Max Power: 0.5(kW) | Stator(Outside Diameter): 160(mm) | Height: 75(mm) | Voltage: DC150(V) | Rotor/Mover: RM

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