Length: 2 Days
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Design, Simulate, Test, And Deploy Safety And Mission Critical Systems With MATLAB And Simulink Training by Tonex

This comprehensive course, “Design, simulate, test, and deploy safety and mission critical systems with MATLAB and Simulink,” offered by Tonex, equips participants with the essential skills and knowledge needed to develop, assess, and deploy safety-critical and mission-critical systems using MATLAB and Simulink. Designed for engineers, developers, and project managers, this training program explores the critical principles, tools, and methodologies required to ensure the robustness and reliability of complex systems.

Learning Objectives: By the end of this course, participants will be able to:

  • Learn the fundamentals of safety and mission-critical systems engineering.
  • Proficiently use MATLAB and Simulink for system design, simulation, and testing.
  • Develop a deep knowledge of safety standards and compliance requirements.
  • Implement advanced modeling and simulation techniques for system validation.
  • Conduct thorough risk assessments and fault tolerance analysis.
  • Successfully deploy safety-critical systems in real-world applications.

Audience: This course is designed for:

  • Systems Engineers and Architects
  • Software Developers
  • Hardware Engineers
  • Project Managers
  • Quality Assurance Professionals
  • Aerospace and Defense Engineers
  • Automotive Engineers
  • Anyone involved in the development of safety-critical or mission-critical systems.

Course Outline:

Introduction to Safety and Mission-Critical Systems

  • Understanding Safety-Critical vs. Mission-Critical Systems
  • Importance of Reliability and Robustness
  • Regulatory Framework and Standards
  • Risk Management and Compliance
  • Case Studies in Safety and Mission-Critical Systems
  • Industry Best Practices

MATLAB and Simulink Essentials for System Design

  • Introduction to MATLAB and Simulink
  • Data Modeling and Visualization
  • Simulating System Behavior
  • Model-Based Design Principles
  • Working with Simulink Blocks
  • Integrating MATLAB and Simulink into the Development Process

Modeling and Simulation Techniques

  • System Requirements and Specifications
  • System Modeling Approaches
  • Dynamic System Simulation
  • Hardware-in-the-Loop (HIL) Simulation
  • Monte Carlo Analysis for Reliability Assessment
  • Model Validation and Verification

Safety and Reliability Analysis

  • Fault Tolerance and Redundancy
  • Failure Modes and Effects Analysis (FMEA)
  • Fault Tree Analysis (FTA)
  • Safety Integrity Levels (SIL)
  • Reliability Block Diagrams (RBD)
  • Probabilistic Safety Assessment (PSA)

Deployment and Testing Strategies

  • Code Generation and Deployment
  • Real-Time Testing and Validation
  • Hardware and Software Integration
  • Testing Frameworks for Safety-Critical Systems
  • Test Automation and Continuous Integration
  • Regulatory Compliance Testing

Case Studies and Practical Applications

  • Case Studies from Aerospace and Automotive Industries
  • Real-World Challenges and Solutions
  • Lessons Learned from Safety-Critical Projects
  • Interactive Workshops and Hands-On Labs
  • Final Project: Design and Test a Safety-Critical System
  • Course Conclusion and Certificates of Completion

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