HIL Testing, a Motor Control Example-1

Overview

This webinar will demonstrate Hardware-in-the-Loop (HIL) testing of a controller for a 3-phase inverter and permanent magnetic synchronous motor (PMSM). We will show you how to run a motor and inverter model in real-time using Simulink Real-Time and a Speedgoat Real-Time Target Machine. You will learn how to configure your model for real-time testing, control your HIL application from within Simulink, create and manage test scenarios, verify and validate functional requirements, generate test reports, and automate your regression tests in the context of Continuous Integration.

Highlights
  • In this webinar, you will learn how to:

    • Prepare a PMSM and inverter model developed using Simscape Electrical for HIL testing
    • Control a HIL application from Simulink
    • Test a microcontroller executing field-oriented control (FOC) algorithms developed with Motor Control Blockset
    • Create and run test cases including execution instructions and assessments for the system under test using Simulink Test
    • Manage your requirements and track their implementation and verification with your model using Simulink Requirements
    • Automate your testing and reporting, and integrate it to your Continuous Integration platform

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Speaker

Ian M. Alferez, Application Engineering Manager

Ian M. Alferez is the Application Engineering Manager at TechSource Systems. He specializes in the field of embedded systems (embedded coder configuration), data analytics (Machine Learning), and technical computing with MATLAB/Simulink. He holds a Bachelor of Science in Electronics and Communication Engineering from the University of San Carlos in Cebu, Philippines. Before joining Techsource Asia, he worked as a Software Development Engineer at Lear Corporation where he refined his skills in Model-Based Design with regards to the Verification and Validation Workflow and Embedded Software / Hardware. 

He has built his forte in Process Automation with MATLAB, Production Code Customization, Optimization, and Generation with Embedded Coder, MATLAB/Simulink Algorithm for Auto Code Generation, and Hardware Target Deployment Customizing the Auto Test Generation / Property Proving with Simulink Design Verifier.

Ian has helped companies in the wireless and communication industries to adopt Model-Based Design to speed up the design and implementation of complex control and algorithmic applications such as communications, radar, computer vision, audio, and deep learning.

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