Power Systems Dynamics Eee 8th Sem Syllabus for BE 2017 Regulation Anna Univ (Professional Elective V) detail syllabus for Electrical & Electronics Engineering (Eee), 2017 regulation is collected from the Anna Univ official website and presented for students of Anna University. The details of the course are: course code (EE8013), Category (PE), Contact Periods/week (3), Teaching hours/week (3), Practical Hours/week (0). The total course credits are given in combined syllabus.
For all other eee 8th sem syllabus for be 2017 regulation anna univ you can visit Eee 8th Sem syllabus for BE 2017 regulation Anna Univ Subjects. For all other Professional Elective V subjects do refer to Professional Elective V. The detail syllabus for power systems dynamics is as follows.
Course Objective:
To impart knowledge about the following topics:
- Basics of dynamics and stability problems
- Modeling of synchronous machines
- Excitation system and speed-governing controllers.
- Small signal stability of a single-machine infinite bus system with excitation system and power system stabilizer.
- Transient stability simulation of multi machine power system.
Unit I
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Unit II
Synchronous Machine Modelling
Synchronous machine – flux linkage equations – Parks transformation – per unit conversion – normalizing the equations – equivalent circuit – current space model – flux linkage state space model. Sub-transient and transient inductances – time constants. Simplified models (one axis and constant flux linkage)- steady state equations and phasor diagrams.
Unit III
Machine Controllers
Exciter and voltage regulators – function and types of excitation systems – typical excitation system configuration – block diagram and state space representation of IEEE type
excitation system – saturation function – stabilizing circuit. Function of speed governing systems – block diagram and state space representation of IEEE mechanical hydraulic governor and electrical hydraulic governors for hydro turbines and steam turbines.
Unit IV
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Unit V
Dynamic Stability
System response to small disturbances – linear model of the unregulated synchronous machine and its modes of oscillation – regulated synchronous machine – distribution of power impact – linearization of the load equation for the one machine problem – simplified linear model – effect of excitation on dynamic stability – approximate system representation – supplementary stabilizing signals – dynamic performance measure – small signal performance measures.
Course Outcome:
- Ability to understand and analyze power system operation, stability, control and protection.
- Ability to get knowledge on the basics of dynamics and stability problems
- Ability to design and modelling of synchronous machines
- Ability to study about excitation system and speed-governing controllers.
- Ability to understand the concept of small signal stability of a single-machine infinite bus system with excitation system.
- Ability to analyze thetransient stability simulation.
Text Books:
- P.M. Anderson and A.A.Fouad, Power System Control and Stability, Galgotia Publications, New Delhi, 2003.
- P. Kundur, Power System Stability and Control, McGraw Hill Inc., USA, 1994.
- R.Ramanujam, Power System Dynamics-Analysis and Simulation, PHI, 2009.
References:
- M.A.Pai and W.Sauer, Power System Dynamics and Stability, Pearson Education Asia, India, 2002.
- James A.Momoh, Mohamed. E. EI-Hawary. Electric Systems, Dynamics and Stability with Artificial Intelligence applications, Marcel Dekker, USA First Edition, 2000.
- C.A.Gross, Power System Analysis, Wiley India, 2011.
- B.M.Weedy, B.J.Lory, N.Jenkins, J.B.Ekanayake and G.Strbac, Electric Power Systems, Wiley India, 2013.
- K.Umarao, Computer Techniques and Models in Power System, I.K. International, 2007.
For detail syllabus of all other subjects of BE Eee, 2017 regulation do visit Eee 8th Sem syllabus for 2017 Regulation.
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