3rd Sem, IC

313329: Control System & Components Syllabus for Instrumentation & Control 3rd Sem K Scheme MSBTE PDF

Control System & Components detailed Syllabus for Instrumentation & Control (IC), K scheme PDF has been taken from the MSBTE official website and presented for the diploma students. For Subject Code, Subject Name, Lectures, Tutorial, Practical/Drawing, Credits, Theory (Max & Min) Marks, Practical (Max & Min) Marks, Total Marks, and other information, do visit full semester subjects post given below.

For all other MSBTE Instrumentation & Control 3rd Sem K Scheme Syllabus PDF, do visit MSBTE Instrumentation & Control 3rd Sem K Scheme Syllabus PDF Subjects. The detailed Syllabus for control system & components is as follows.

Rationale

For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
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Course Outcomes:

Students will be able to achieve & demonstrate the following COs on completion of course based learning

  1. Apply fundamentals of control systems to derive the Transfer Function
  2. Interpret the time response and stability of a given control system
  3. Use relevant controller for controlling a given process system
  4. Use relevant control system component for position control
  5. Choose appropriate actuators for a given application

Unit I

Fundamentals of control systems 1.1 Control system: definition, Open loop and closed loop, linear and non linear, time variant and time invariant 1.2 Feedbacks and its types: Degenerative and regenerative, effect of feedback on stability 1.3 Transfer function: definition, order of a control system (0, 1, 2), transfer function of simple R-C, LC and R-L-C circuits 1.4 Block diagram: need and significance, represent sample physical systems in terms of block diagram having various inputs and outputs, reduction rules, simple numerical 1.5 Poles and zeros of a transfer function: pole-zero plot in S-plane Lecture Using Chalk-Board Video Demonstrations Flipped Classroom Presentations Collaborative learning Cooperative Learning

Unit II

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Unit III

Process Control 3.1 Process control system: Block diagram, function of each block 3.2 Discontinuous control actions – ON-OFF controller: Operation, definition of differential gap 3.3 Continuous control actions-Proportional, Integral and Derivative: operation, output equations, corresponding transfer function, Response graph 3.4 Composite controllers – PI, PD, PID controllers : operation, output equations, Response graph, comparison, application and selection criteria Lecture Using Chalk-Board Video Demonstrations Flipped Classroom Presentations Collaborative learning Cooperative Learning

Unit IV

Position Control 4.1 Servo system: concept, generalized block diagram 4.2 DC servo system: functional diagram, potentiometer as error detector, DC servo motor -characteristic, difference from a normal DC motor 4.3 AC servo system: functional diagram, synchro as error detector, AC servo motor-characteristic, difference from a normal 2 phase induction motor 4.4 Stepper motor: Working and applications of Permanent Magnet and variable reluctance stepper motor Lecture Using Chalk-Board Video Demonstrations Flipped Classroom Presentations Collaborative learning Cooperative Learning

Unit V

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Laboratory Equipment

  1. Any Open source software like scilab to find out poles, zeros, TF, and time response of the given system (https://www.scilab.org/) 1,2,4,5,6,8,9
  2. On-off controller:- Controlled variable- Temperature or Flow or Pressure or Level; Signal ConditioningOPAMP based signal conditioning with 1-5% accuracy; Control- Relay based; Power requirement- 230V single phase AC 10
  3. Proportional and PID controller:- Controlled Variable- Temperature or flow or pressure or level; Input Value- Linear 0-20mA and or 4-20mA, 0-5V and or 1-5V; Output Value- appropriate range to study PID controller response; Display Type- 4.5 digit 7 segment or 16×2 LCD; Set up- Appropriate setup for control of controlled variable; Power requirement- 230V single phase AC 11,12
  4. Potentiometer as an error detector:- Potentiometer- 270 to 360 degree rotation with 1 degree resolution; on kit 3½ digit DVM; Test points- Sockets at Different Places; Power Supply- Inbuilt regulated power supply from 220 V, 50 Hz AC supply 13
  5. Synchro Transmitter Receiver Kit:- Synchro transmitter-receiver pair with calibrated dials(0-200V AC); Receiver use as control transformer; Built-in balanced demodulator circuit; Panel meter for ac/dc voltages; Locking system for receiver rotor; Power requirement- 230V single phase 50 Hz 14
  6. D.C. Position control system:- DC Motor- Geared PM motor 12V/1A (50/60 RPM ); Tacho Feedback- Positive/Negative tacho-generator feedback with polarity reverse switch; Tacho Constant- Calibrated tacho constant 0.2 to 1 in steps; Motor Unit- The motor unit housed in a separate cabinet with transparent cover; Interconnection with the main unit- appropriate connector; Built in capture/ display card- optional; Power Requirement: Inbuilt regulated power supply from 220 V, 50 Hz AC supply. 15
  7. Electro pneumatic trainer kit:- Air Compressor- 0 to 8/10 bar pressure, 150-180 psi capacity, auto cutoff; Single/ Double acting cylinder- 20mm to 30mm bore, 25 to 75 stroke, pressure 0.5 to 8/10 bar; Directional control valve-3/2 for single acting and 5/2 for double acting, 0-8/10 bar, lever or solenoid operated 16
  8. Breadboard, Resistors(10K ohm to 1 M ohm), capacitors(100µF to 1000µF), DC power supply(0-30V, 2 A), Digital Multimeter, Stop Watch 3
  9. Standard test signal generator kit:- outputs- Step, Ramp, impulse and parabolic signals; Variable DC Voltage : -12V to +12V; Frequency- approx. 50Hz to 5KHz; Power Requirements- DC regulated from 230V single phase AC 7
  10. Type 0 system trainer kit:- Input Type- provision to connect external inputs (step, ramp and parabolic); Frequency of operation- approx. 50Hz to 5KHz(may vary for different inputs; Power Requirements- DC regulated from 230V single phase AC 7

Learning Materials / Books

  1. Nagrath I.J, M. Gopal Control System Engineering New age International ISBN: 9788122420081
  2. Andrew A. Parr Hydraulics and Pneumatics Elsevier Science and Technology Books ISBN: 0750644192
  3. Johnson C. D. Process Control Instrumentation Technology Prentice hall of India ISBN: 9789332549456
  4. Ogata K. Modern Control Engineering Pearson India ISBN: 9789332550162
  5. Varmah K.R Control Systems Tata McGraw Hill ISBN: 9780070678750
  6. Sawhney A.K A Course in ELECTRICAL AND ELECTRONIC MEASUREMENTS AND INSTRUMENTATION Dhanpat Rai and Co ISBN: 9788177001006.
  7. Manke B. S. Linear Control Systems with MATLAB Applications Khanna Publishers ISBN: 9788174093103
  8. S. Hasan Saeed Automatic Control Systems (With Matlab Programs) Arihant ISBN: 978-8190691925

Learning Websites & Portals

For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier.
Get it on Google Play.

For detail Syllabus of all other subjects of Instrumentation & Control, K scheme do visit Instrumentation & Control 3rd Sem Syllabus for K scheme.

For all Instrumentation & Control results, visit MSBTE Instrumentation & Control all semester results direct links.

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