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Industrial Automation-Classic Control
3 students

Industrial Automation-Classic Control

classic control- control systems- automation diploma
Last updated 7/2024
Arabic

What you'll learn

  • Understand the fundamental concepts and importance of control systems in engineering.
  • Recognize real-world applications of control systems in different industries.
  • Identify and describe the function of key components in classic control systems, such as sensors, actuators, and controllers.
  • Identify common protection devices (fuses, circuit breakers) and their applications in control systems.
  • Identify different types of sensors used in control systems (e.g., temperature, pressure, position, and speed sensors).
  • Apply sensors in practical control system applications, ensuring accurate data acquisition and processing.
  • Implement timers in control circuits to achieve desired time-based operations.

Course content

1 section8 lectures9h 37m total length
  • Classic Control lec.11:15:27
  • Classic control lec.21:30:55
  • Classic control lec.31:33:03
  • Classical Control lec41:22:47
  • Classical Control lec.51:10:46
  • Classical Control lec.61:31:21
  • Classical Control lec.734:27
  • Classical Control lec.838:19

Requirements

  • Basics of Electrical Engineering

Description


This course provides an in-depth exploration of classic control systems, covering fundamental concepts, key components, design principles, and practical applications. Students will learn how to model, analyze, and design control systems using both theoretical and simulation tools. The course will also cover the operation and control of various motors, the role of sensors, timers, and counters in control systems, and the importance of circuit protection.


Course Objectives:

  1. To introduce the fundamental concepts and significance of control systems in engineering.

  2. To provide a comprehensive understanding of the components and architecture of classic control systems.

  3. To equip students with the skills to design and simulate control systems using modern tools and methodologies.

  4. To highlight the importance of circuit protection in maintaining system safety and reliability.

  5. To explore the operation and control techniques for different types of electric motors.

  6. To understand the various types of sensors, their operational principles, and their applications in control systems.

  7. To investigate the types, operations, and applications of timers and counters in control systems.

    Learning Outcomes:

    By the end of this course, students will be able to:

    1. Understand and explain the fundamental concepts of control systems.

    2. Identify and describe the functions of various control system components.

    3. Develop mathematical models and design controllers for control systems.

    4. Utilize simulation tools to analyze and validate control system designs.

    5. Implement effective circuit protection strategies.

    6. Operate and control different types of electric motors.

    7. Apply knowledge of sensors, timers, and counters in practical control system applications.

Who this course is for:

  • Engineering students
  • Fresh Engineers