4th Sem, IE

4087: Process Control Instrumentation Lab Syllabus for Instrumentation Engineering 4th Sem 2021 Revision SITTTR

Process Control Instrumentation Lab detailed syllabus for Instrumentation Engineering (IE) for 2021 revision curriculum has been taken from the SITTTRs official website and presented for the Instrumentation Engineering students. For course code, course name, number of credits for a course and other scheme related information, do visit full semester subjects post given below.

For Instrumentation Engineering 4th Sem scheme and its subjects, do visit Instrumentation Engineering (IE) 4th Sem 2021 revision scheme. The detailed syllabus of process control instrumentation lab is as follows.

Course Objectives:

  • To illustrate basic concept and operation of control valves.
  • To design electronic converters and electronic controllers using op-amp.
  • To demonstrate the various characteristics of control valve.
  • To simulate various controller modes using MATLAB Simulink.
  • To simulate various control system problems and study the response using MATLAB Simulink.

Course Outcomes:

On completion of the course, the student will be able to:

  1. Implement error detector, Instrumentation Amplifier, Voltage to Current converter, Current to Voltage converter. Different controller modes (P, PI, PD, PID). etc Design and setup alarm circuits for simple process control applications and apply these circuits in suitable situations
  2. Demonstrate the various characteristics of control valves
  3. Simulate various controller modes using MATLAB& Simulink.
  4. Simulate various control system problems and study the response using MATLAB & Simulink.

Module 1:

  1. Design and setup Error detector circuit and Instrumentation amplifier using Op-amp.
  2. Design and setup current to voltage and voltage to current converters using OP amp.
  3. Design Simple alarm circuits using universal gates and comparator for Process control application
  4. Design and setup P, PI, PD and PID controllers using OP amp.

Module 2:

  1. Plot the curve between stem position and flow rate of a control valve.
  2. Plot the curve between control signal and flow rate of a control valve.
  3. Calculate the flow coefficient of control valve.

Module 3:

  1. Simulate Proportional and Proportional Integral controller using MATLAB & SlMULINK.
  2. Simulate Proportional derivative and Proportional Integral derivative controller using MATLAB &Simulink.
  3. Simulate instrumentation amplifier using MATLAB &Simulink.

Module 4:

  1. Flow control process: plot the response curve for step response of setpoint change. Simulate for standard test signal
  2. Temperature control process: plot the response curve for step response of setpoint change. Simulate for standard test signal

Reference Books:

  1. Curtis. D. Johnson, Process control instrumentation technology
  2. Liptak, Volume II, Instrument Engineers Hand book, Chilton Book Company
  3. Krishnakanth, Computer based Industrial Control
  4. Donald .P. Eckman, Automatic process control
  5. Ernest O Doebelin, Measurement Systems application and Design 5th Edition

Online Resources

  1. https ://scienceq.org/wp-content/uploads/2018/10/JAETV71102.pdf
  2. https://nptel.ac.in/content/storage2/nptel_data3/html/mhrd/ict/text/108108114/lec25.pdf
  3. http://ctms.engin.umich.edu/CTMS/index.php?example=Introduction&section=Control Digital
  4. https://www.mathworks.com/solutions/power-electronics-control.html

For detailed syllabus of all other subjects of Instrumentation Engineering (IE), 2021 revision curriculum do visit Instrumentation Engineering 4th Sem subject syllabuses for 2021 revision.

To see the syllabus of all other branches of diploma 2021 revision curriculum do visit SITTTR diploma all branches syllabus..

To see the results of Instrumentation Engineering (IE) of diploma 2021 revision curriculum do visit SITTTR diploma Instrumentation Engineering (IE) results..

For all Instrumentation Engineering academic calendars, visit Instrumentation Engineering all semesters academic calendar direct link.

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