The course covers Simulink fundamentals, block-based modeling, simulation workflows, signal routing, subsystem design, model configuration, basic control system modeling, and code generation concepts.
Overview
This Simulink training is designed to help participants model, simulate, and analyze dynamic systems using MATLAB Simulink. The course covers Simulink fundamentals, block-based modeling, simulation workflows, signal routing, subsystem design, model configuration, basic control system modeling, and code generation concepts. Participants will gain hands-on experience to build and validate dynamic system models for engineering, automotive, aerospace, and industrial automation applications.
Learning Outcomes
โข Understand the modeling environment, simulation architecture, and system design capabilities of Simulink for engineering application development.
โข Set up and configure the Simulink environment, libraries, and development tools for simulation projects.
โข Design block diagrams, dynamic models, control systems, and modular simulation workflows using Simulink development approaches.
โข Implement signal processing, system modeling, data analysis, and simulation workflows effectively.
โข Debug, test, and optimize Simulink models for performance, accuracy, and maintainability.
โข Build scalable, reliable, and production-ready simulation and control system solutions using Simulink best practices.
Duration & Delivery Mode
21 hours
Target Audience
โข Control systems engineers
โข Automotive and aerospace engineers
โข Embedded systems developers
โข Mechatronics and robotics engineers
โข Engineering students and researchers
Pre-requisites
โข Basic understanding of MATLAB fundamentals
โข Familiarity with basic engineering and mathematical concepts
โข Interest in system modeling and simulation
Skillset Achieved
โข Building dynamic system models in Simulink
โข Configuring and running simulations
โข Using Simulink blocks and libraries
โข Creating subsystems and hierarchical models
โข Analyzing simulation results
โข Integrating Simulink with MATLAB scripts
โข Applying basic control system modeling
โข Preparing models for code generation
Course Outcome
By the end of this training, participants will be able to build, simulate, and analyze dynamic system models using Simulink with confidence. Learners will gain strong fundamentals in block-based modeling, control system simulation, and model validation, enabling them to apply Simulink effectively in engineering and industrial applications.
Course Outline
Introduction to Simulink & Modeling Basics
โข What is Simulink and where it is used
โข Simulink interface and libraries
โข Creating basic block diagrams
โข Connecting and configuring blocks
Signal Routing & Data Types
โข Working with signals and buses
โข Data types and signal attributes
โข Using mux, demux, and bus creators
โข Managing signal flow
Subsystems & Model Organization
โข Creating subsystems
โข Hierarchical modeling
โข Masking subsystems basics
โข Organizing large models
Simulation Configuration & Execution
โข Simulation settings and solvers
โข Fixed-step vs variable-step solvers
โข Running and stopping simulations
โข Viewing simulation results
Modeling Dynamic Systems
โข Continuous and discrete systems
โข Integrators and transfer functions
โข Modeling physical systems basics
โข Using Simscape overview
Control System Modeling Basics
โข Modeling feedback control systems
โข PID controller blocks
โข Tuning PID controllers basics
โข Analyzing control system responses
Data Visualization & Analysis
โข Scopes and data inspection tools
โข Logging simulation data
โข Using Simulation Data Inspector
โข Analyzing time-series data
Interfacing Simulink with MATLAB
โข Calling MATLAB functions from Simulink
โข Using MATLAB Function blocks
โข Parameter tuning from MATLAB
โข Automating simulations
Model Verification & Validation
โข Model checking basics
โข Validating simulation results
โข Comparing simulation scenarios
โข Best practices for model verification
Code Generation Basics
โข Introduction to Simulink Coder
โข Generating C/C++ code
โข Embedded code generation overview
โข Preparing models for deployment
Real-Time & Hardware-in-the-Loop Basics
โข Real-time simulation concepts
โข HIL testing overview
โข Interfacing with hardware basics
โข Testing embedded controllers
Performance Optimization & Model Management
โข Improving simulation performance
โข Managing large models
โข Version control for Simulink models
โข Collaboration best practices
Simulink Project Workshop & Best Practices
โข Building a complete Simulink model
โข Applying modeling standards
โข Running end-to-end simulations
โข Final project review and optimization
Assessment Topics
โข Simulink Setup & Simulation Architecture
โข Project Configuration, Libraries & Block Diagram Modeling
โข Dynamic Systems, Control Models & Signal Processing
โข Data Analysis, Simulation Workflows & Model Integration
โข Testing, Debugging & Performance Optimization
โข End-to-End Simulink Application Development Project
Evaluation
Participants will be evaluated through hands-on Simulink modeling labs, practical simulation exercises, instructor-led model reviews, and a final project-based assessment focused on building and validating a complete Simulink system model.
Course Materials
Participants will receive course materials, slides, reference materials, exercises and access to resources for further learning.
Certification
Upon successful completion of the training, participants will receive an AcadNXT Certificate of Completion for Simulink. This digital, verifiable certification validates practical Simulink modeling, simulation, and basic control system development skills and can be shared on LinkedIn and included in professional profiles to enhance engineering career credibility.
Available cities in United States for this course
Explore delivery locations across United States and move into city pages for localized schedules and context.
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WHO WILL BE FUNDING THE COURSE?
What Our Students Say
Says this Simulink training helped him quickly build and validate dynamic system models for real-world applications.
Highlights AcadNXTโs Simulink course as an excellent program for mastering control system simulation.
Shares that the training improved his teamโs ability to integrate Simulink models into embedded workflows.
States that this course provided strong practical guidance for advanced system modeling and validation.
Recommends AcadNXTโs Simulink Training for engineers working with dynamic system modeling and simulation.