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Automotive Systems and Controls using MATLAB/Simulink in Pune

A 3 month introductory course on how MATLAB and Simulink can be used for automotive systems and their control

12 weeks long course | 100% Online

Learn from leading experts in the industry

Project based learning with 2 industry level projects that learners can showcase on LinkedIn.

Learn Key Tools & Technologies MATLAB, Simulink

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Syllabus

This course is full of best-in-class content by leading faculty and industry experts in the form of videos and projects

Course Overview

  • The students will gain a thorough knowledge of the Control Systems Fundamentals.
  • During the coursework, the students will learn the following concepts:
    • Building Blocks of Control Theory
    • Time and Frequency Domain Modelling and Design
    • Transfer Function, State-space, Root-locus, Bode Plots, Nyquist Plots
    • Time Response, Frequency Response, Steady-state Error Analysis.
  • Also, they will learn about Digital Control Systems.
  • The course will give an overview of the software tools such as MATLAB and Simulink which are widely used in the industry.
  • The students are exposed to the modern trends and standard practices being followed in the industry right now.
  • This course forms the foundation for anyone wanting to pursue a career in this domain.

Course Syllabus in Pune

On a daily basis we talk to companies in the likes of Tata Elxsi and Mahindra to fine tune our curriculum.

Week 01 - Introduction to Modelling Techniques - Part I

  • Introduction and Preliminaries
    • Control Systems
    • Modeling a Physical System
    • Laplace Transform
    • Control System Design
    • Types of Control Strategies

Week 02 - Introduction to Modelling Techniques - Part II

  • Modeling Techniques: Nonlinearities and Control
    • Mathematical Modelling of Systems
      • Mechanical
      • Electrical
      • Fluid system
      • Thermal system
    • Nonlinearities
    • Effects of Nonlinearities
    • Linearization

Week 03 - System Analysis - Part I

  • System Analysis: Model Reductions
    • Block Diagrams
    • Signal-Flow Graphs (SFGs)
    • Mason’s Rule
    • SFGs of Differential Equations

Week 04 - System Analysis - Part II

  • System Analysis: Fundamental Elements
    • Poles, Zeros, and System Response
    • First-Order Systems
    • Second-Order Systems
    • Higher-Order Systems
    • System Response with Zeros
    • Analysis of Block Diagrams
    • Modifying the System Response

Week 05 - System Analysis - Part III

  • System Analysis: Stability
    • Routh-Hurwitz Criterion
    • Special Cases of Routh-Hurwitz Criterion
    • Steady-State Errors for Unity Feedback Systems
    • Static Error Constants and System Type
    • Steady-State Errors for Non-Unity Feedback Systems
    • Sensitivity

Week 06 - System Analysis - Part IV

System analysis: Root locus

  • Definition of Root Locus
  • Conditions of Root Locus
  • Sketching the Root Locus – Part I
  • Sketching the Root Locus – Part II
  • Pole Sensitivity

Week 07 - Design Techniques - Part I

  • Design Techniques: Bode and Nyquist Plots
    • Bode Plots
    • Gain Margin and Phase Margin
    • Polar Plots
    • Nyquist Plots
    • Stability Analysis using Nyquist Plots

Week 08 - Design Techniques - Part II

  • Design Techniques: Compensators - Part I
    • Automatic Control Systems
    • PID Controller Design using Ziegler-Nichols Rules
    • Lag Compensation
    • Lead Compensation
    • Lag-Lead Compensation
    • Computer-Based Design
    • Physical Realization of Compensation
    • Systems with Time-Delay

Week 09 - Design techniques – Part III

Week 10 - State-Space representation - Modelling and analysis

  • State-Space Representation: Modelling and Analysis
    • State-Space Representation
    • State-Space to Transfer Functions
    • Transfer Functions to State-Space
    • Alternative Representations in State-Space
    • Controllability
    • Observability
    • Stability in State-Space

Week 11 - State-Space representation - Design

  • State-Space Representation: Design
    • Similarity Transformations
    • Controller Design
    • Alternative Approaches to Controller Design
    • Observer Design
    • Alternative Approaches to Observer Design

Week 12 - Digital Control Systems and Future Scope

  • Digital Control Systems and Future Scope
    • Modeling the Digital Computer
    • The Z-Transform
    • Transfer Functions
    • Stability
    • Transformations

Our courses have been designed by industry experts to help students achieve their dream careers

Industry Projects in Pune

Our projects are designed by experts in the industry to reflect industry standards. By working through our projects, Learners will gain a practical understanding of what they will take on at a larger-scale in the industry. In total, there are 2 Projects that are available in this program.

Project Based on Transfer Function Relating Pitch Angle to Elevator Surface Angle for Unmanned Free-Swimming Submersible (UFSS) vehicle

In this project, the students will determine a set of parameters based on the given input.

Project Based on Unity Feedback Design of Hybrid Electric Vehicle (HEV)

In this project, for a unity feedback design of the hybrid electric vehicle (HEV) based on the given plant and compensator transfer functions, the students will determine a set of parameters.

Our courses have been designed by industry experts to help students achieve their dream careers

Ratings & Reviews by Learners

Skill-Lync has received honest feedback from our learners around the globe.

Google Rating
4.6

Upgrade Your Technical Skills with Skill-Lync’s Automotive Systems and Controls Using MATLAB/ Simulink Course in Pune

 

One of the best automotive engineering courses in Pune, this three-month course by Skill-Lync will introduce you to automotive control systems and enable you to develop control algorithms using MATLAB/Simulink. It will cover the fundamentals of control systems, starting with basic concepts like 'what is automotive systems engineering.' This course will further introduce you to complex topics like system analysis, modelling and design techniques, Routh-Hurwitz criterion, digital control systems, Nyquist plots, root-locus, and state-space representation. 

Also, you will learn to use MATLAB/ Simulink in implementing feedback control design strategies. Furthermore, this automotive certification online course in Pune will expose you to futuristic concepts like control system design for drone operations and analysis of hybrid electric vehicle subsystems. Through immersive video tutorials, hands-on projects, and challenging tasks, this course will stir your brain to creative enthusiasm, enhancing your technical skills beyond what a traditional engineering degree can provide.

FAQs

Why choose this automotive certification online course offered by Skill-Lync in Pune?

Skill-Lync’s Automotive Systems and Controls Using MATLAB/ Simulink is the best automotive engineering course in Pune and one of the best automotive courses in India. Two industry-level projects will enable you to apply theory in practice. Throughout the course duration, you will get personalised guidance and attention from instructors, who are industry leaders and technical experts. 

What are the prerequisites to take this automotive engineering course in Pune?

One of the best automotive courses in Pune, this course has no requisites and is open to anyone with interest. 

What is the course fee for this automotive course offered by Skill-Lync in Pune?

The course fee for this automotive certification online course in Pune ranges from Rs. 7,000 to Rs. 15,000 per month. If you choose the base plan, you will get two-month course access for Rs. 7,000 per month for three months. Similarly, the pro plan will give you four-month access for Rs. 10,000 per month for three months. Finally, the premium plan will give you lifetime access for Rs. 15,000 per month for three months.

What are the benefits of taking this automotive engineering course offered by Skill-Lync?

One of the best automotive courses in India, it will expose you to the central concepts of automotive engineering, best practices, and the latest trends followed by the industry. If you manage to be among the top 5% of candidates, you will receive a merit certificate and the course completion certificate. You can also showcase the practical projects on LinkedIn, helping you enhance your portfolio. 

What career prospects are available after completing this online automotive certification course in Pune?

Some roles you can work on after taking this course are:

  1. AutoCAD Engineer
  2. MATLAB Engineer
  3. Control System Engineer
  4. Electric Vehicle Scenario Software Developer
  5. HEV/EV System Manager

What is the average salary I can expect after taking this automotive engineering course in Pune?

After completing this course, you can expect a salary of Rs. 2.87 Lakhs to Rs. 10 Lakh per annum.

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