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BENADIR UNIVERSITY
FACULTY OF ENGINEERING & TECHNOLOGY
DEPARTMENT OF ELECTRICAL & ELECTRONIC ENGINEERING
SEMESTER 2, 2014/2015
EN01-EE404 Control Systems
Course syllabus
Synopsis:
In this course it is aimed to introduce to the students the principles and applications of control
systems in everyday life. The basic concepts of block diagram reduction, time domain analysis
solutions to time invariant systems and also deals with the different aspects of stability analysis
of systems in frequency domain and time domain.
Course contents
Chapter-1: Introduction
Concepts of Control Systems- Open Loop and closed loop control systems and their differences-
Examples of control systems-Classification of control systems, Feed-Back Characteristics, Effects
of feedback. Mathematical models – Differential equations, Impulse Response and transfer
functions - Translational and Rotational mechanical systems
Chapter-2: Transfer Function Representation
Transfer Function of DC Servo motor - AC Servo motor- Synchro transmitter and Receiver -Block
diagram algebra –Signal flow graph - Reduction using Mason‘s gain formula.
Chapter-3: Time Response Analysis
Standard test signals - Time response of first order systems – Characteristic Equation of
Feedback control systems, Transient response of second order systems - Time domain
specifications – Steady state response - Steady state errors and error constants – Effects of
proportional, integral, derivative Controls.
Chapter-4: Stability Analysis in S-Domain
The concept of stability – Routh‘s stability criterion – qualitative stability and conditional
stability – limitations of Routh‘s stability. The root locus concept - construction of root loci-
effects of adding poles and zeros to G(s)H(s) on the root loci.
Chapter-5: Frequency Response Analysis
Introduction, Frequency domain specifications-Bode diagrams-Determination of Frequency
domain specifications and transfer function from the Bode Diagram-Phase margin and Gain
2
margin-Stability Analysis from Bode Plots.
Chapter-6: Stability Analysis in Frequency Domain
Polar Plots- Nyquist Plots- Stability Analysis.
Chapter-7: Classical Control Design Techniques
Compensation techniques – Lag, Lead, Lead-Lag Controllers design in frequency Domain, P, PD,
PI, PID Controllers.
Chapter-8: State Space Analysis Of Continuous Systems
Concepts of state, state variables and state model, derivation of state models from block
diagrams, Diagonalization- Solving the Time invariant state Equations- State Transition Matrix
and it‘s Properties.
Text Books:
1. Automatic Control Systems– by B. C. Kuo and Farid Golnaraghi – John wiley and son‘s, 8th
edition, 2003.
2. Control Systems Engineering – by I. J. Nagrath and M. Gopal, New Age International (P)
Limited, Publishers, 5th edition, 2007.
3. Control Systems – A. Anand Kumar, Prentice Hall of India Pvt. Ltd.,
Reference Books:
1. Modern Control Engineering – by Katsuhiko Ogata – Prentice Hall of India Pvt. Ltd., 5th
edition, 2010.
2. Control Systems Engineering - by NISE 5th Edition – John wiley.
3. ―Modelling & Control Of Dynamic Systems‖ by Narciso F. Macia
George J. Thaler, Thomson Publishers.
4. Modern Control Engineering – by Yaduvir Singh and S. Janardhan, CENGAGE Learning.

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Control systems syllabus

  • 1. 1 BENADIR UNIVERSITY FACULTY OF ENGINEERING & TECHNOLOGY DEPARTMENT OF ELECTRICAL & ELECTRONIC ENGINEERING SEMESTER 2, 2014/2015 EN01-EE404 Control Systems Course syllabus Synopsis: In this course it is aimed to introduce to the students the principles and applications of control systems in everyday life. The basic concepts of block diagram reduction, time domain analysis solutions to time invariant systems and also deals with the different aspects of stability analysis of systems in frequency domain and time domain. Course contents Chapter-1: Introduction Concepts of Control Systems- Open Loop and closed loop control systems and their differences- Examples of control systems-Classification of control systems, Feed-Back Characteristics, Effects of feedback. Mathematical models – Differential equations, Impulse Response and transfer functions - Translational and Rotational mechanical systems Chapter-2: Transfer Function Representation Transfer Function of DC Servo motor - AC Servo motor- Synchro transmitter and Receiver -Block diagram algebra –Signal flow graph - Reduction using Mason‘s gain formula. Chapter-3: Time Response Analysis Standard test signals - Time response of first order systems – Characteristic Equation of Feedback control systems, Transient response of second order systems - Time domain specifications – Steady state response - Steady state errors and error constants – Effects of proportional, integral, derivative Controls. Chapter-4: Stability Analysis in S-Domain The concept of stability – Routh‘s stability criterion – qualitative stability and conditional stability – limitations of Routh‘s stability. The root locus concept - construction of root loci- effects of adding poles and zeros to G(s)H(s) on the root loci. Chapter-5: Frequency Response Analysis Introduction, Frequency domain specifications-Bode diagrams-Determination of Frequency domain specifications and transfer function from the Bode Diagram-Phase margin and Gain
  • 2. 2 margin-Stability Analysis from Bode Plots. Chapter-6: Stability Analysis in Frequency Domain Polar Plots- Nyquist Plots- Stability Analysis. Chapter-7: Classical Control Design Techniques Compensation techniques – Lag, Lead, Lead-Lag Controllers design in frequency Domain, P, PD, PI, PID Controllers. Chapter-8: State Space Analysis Of Continuous Systems Concepts of state, state variables and state model, derivation of state models from block diagrams, Diagonalization- Solving the Time invariant state Equations- State Transition Matrix and it‘s Properties. Text Books: 1. Automatic Control Systems– by B. C. Kuo and Farid Golnaraghi – John wiley and son‘s, 8th edition, 2003. 2. Control Systems Engineering – by I. J. Nagrath and M. Gopal, New Age International (P) Limited, Publishers, 5th edition, 2007. 3. Control Systems – A. Anand Kumar, Prentice Hall of India Pvt. Ltd., Reference Books: 1. Modern Control Engineering – by Katsuhiko Ogata – Prentice Hall of India Pvt. Ltd., 5th edition, 2010. 2. Control Systems Engineering - by NISE 5th Edition – John wiley. 3. ―Modelling & Control Of Dynamic Systems‖ by Narciso F. Macia George J. Thaler, Thomson Publishers. 4. Modern Control Engineering – by Yaduvir Singh and S. Janardhan, CENGAGE Learning.