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Showing posts with label Power System Analysis And Control Syllabus. Show all posts
Showing posts with label Power System Analysis And Control Syllabus. Show all posts
EE 8th sem Power System Analysis & Control Syllabus RGTU/RGPV EE801 Power System Analysis & Control Syllabus

EE 8th sem Power System Analysis & Control Syllabus RGTU/RGPV EE801 Power System Analysis & Control Syllabus

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RGTU/RGPV EE801 Power System Analysis & Control Syllabus
RGTU/RGPV Power System Analysis & Control SYLLABUS
Electrical Engineering EE 8th Semester Syllabus

PROGRAMME:  B.E. Electrical  Engineering, VIII Semester 
Course: EE801 Power System Analysis & Control

Unit-I   General  -  Problems associated with modern interconnected power Systems, deregulation, power systems restructuring, distributed generation, congestion, available  transfer capacities, pricing of energy and transmission services.

Unit-II     Power flow studies - Formulation of static power flow equations and solutions using Gauss- Seidel, Newton Raphson and FDLF methods, comparison of these methods, Economic operation of power system - Economic dispatch, Emission dispatch, line loss, ITL, economic dispatch using lagrangian multiplier method.

Unit-III   MW Frequency control-  Coherency, control area, modeling of speed control mechanism, load  damping, block diagrammatic   representation of single  and  two area interconnected system, static and dynamic response, .optimum parameter  adjustment.

Unit-IV   MVAR Voltage control Problem- Difference in control strategy over MW  – f control, characteristics of an excitation system, DC AC and static excitation system, General block diagram representation of voltage  regulators. 

Unit-V   Power System Stability - Steady state, dynamic and transients stability, Swing equation , equal area criterion, solution of swing equation using step by step method modified Eulers method and Rnge-Kutta method, methods of improving  transient stability.

EE801 Power System Analysis & Control Reference Books :
1.  Modern Power System Analysis-by I.J. Nagrath &  D.P. Kothari Tata Mc Graw – Hill Publication Company Ltd 2nd edition.
2.  Electrical Power Systems-by C.L. Wadhwa New Age International (P) Limited Publishers, 2nd edition 1998.
3.  Reactive power Control in Electric Systems-by T.J.E. Miller, John Wiley & Sons.
4.  T.K. Nagsarkar, M.S. Sukhiza, -“Power System Analysis”, Oxford University Press.
5.   Elgerd O.I., “Electric Energy Systems Theory”, TMH, New Delhi, Second Edition 1983.
6.  Prabha Kundur, “Power system stability and control”, Mc-Graw Hill Inc, New York, 1993.
7.  Taylor C.W., “Power System Voltage Stability”, Mc-Graw Hill Inc, New York, 1993.
8.  Nagrath IJ, Kothari D.P., “Power System Engineering”, Tata Mc-Graw Hills, New Delhi 1994.
9.  Weedy B.M. “Electric Power System” John Wiley and Sons, 3rd edition.
10. P.S.R. Murthy, “Power System Operation and Control”, Tata Mc-Graw Hill, New Delhi 1984.
11. Power Generation, Operation and Control by A.J. wood and B.F. Wollenberg John Wiley & Sons Inc. 1984.
12. Power Systems Analysis- by A.R. Bergen Prentice Hali Inc.
13. Economic Operation of Power Systems- by L.K. Kirchmayer Wiley Eastern Ltd.

EE801 Power System Analysis & Control List Of Experiments:
1.  To develop a program in Matlab for information of Y-bus matrix for N bus system.
2.  Load flow solution for 3-bus system using Gauss- Seidel, Newton Raphson and FDLF methods up to 3 iteration. 
3.  Load flow solution for IEEE 6-bus and 30-bus system in Matlab using  Newton Raphson method.
4.  Assessment of transient stability of a single machine system.
5.  Effect of compensation on voltage profile of IEEE 6-bus system.
6.  Study of any software tools (PSAT, EDSA, MY POWER, ETAP etc).