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Colleges

Systems Dynamics and Automatic Control Laboratory

Course Description: The course is implemented according to continuous improvement procedures and includes the following content: experiments supporting control systems theory, including: servo control of electric motors; linear and torsional vibration control; gyroscopic motion control; pendulum motion control; hydromechanical liquid level control; pressure control; pneumatic servo systems; vibration control; and digital simulation of linear systems using a software package such as MATLAB.
Credits: 1
Prerequisites: ME 465
Objectives of the course :
  • The ability to identify, formulate, and solve problems in linear process dynamics, applying knowledge in mathematics, vibrations, systems dynamics, other sciences, and engineering.
  • The ability to use modern engineering technologies, skills, and tools necessary for the practice of mechanical engineering.
  • The ability to design and conduct laboratory experiments, as well as analyze and interpret data, especially for evaluating the efficiency of control system designs.
  • The ability to design a control system that meets the requirements of a given process.
  • The ability for continuous development in understanding and expertise in process dynamics and control systems.
Course outputs :

First: Knowledge & Understanding:

  • Identify most control system components regardless of manufacturers, and understand their expected functions.
  • Familiarity with important empirical concepts such as digital sampling, and distinguishing between servo control systems and regulatory control systems.

II: Skills:

  • The ability to conduct experiments on linear systems, including vibrations, system dynamics, DC motors, and hydraulic and pneumatic control systems.
  • Acquire mechatronic simulation skills using MATLAB and Simulink tools.

Third: Values:

  • Participate actively in discussions with colleagues and faculty.
Additional information:

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