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Electrical Engineering
Power System-II
Other university, Electrical Engineering Semester 6, Power System-II Syllabus
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Unit - 1 Performance Of Transmission Lines
Unit 1
Performance of Transmission Line
1.1 Evaluation of ABCD constants and equivalent circuit parameters of Long transmission line
1.2 Concept of Complex Power
1.3 Power flow using generalized constants
1.4 Surge impedance loading
1.5 Line efficiency
1.6 Regulation
1.7 Compensation
1.8 Numerical based on ABCD constants of Long transmission line
1.9 Power flow
Unit - 2 EHVAC Transmission
Unit 2
EHVAC Transmission
2.1 Role of EHVAC transmission
2.2 Standard Transmission Voltages
2.3 Average Values of line parameters
2.4 Power Handling capacity and Line loss
2.5 Phenomenon of Corona
2.6 Disruptive critical voltage
2.7 Visual Critical Voltage
2.8 Radio and television interference
2.9 Corona loss and power handling capacity
2.10 Factors and conditions affecting corona loss
2.11 Reduction of interference
2.12 Numerical Based on Corona
Unit - 3 Per Unit System And Load Flow Analysis
Unit 3
Per unit system and Load Flow Analysis
3.1 Per unit system
3.2 Single Line Diagram
3.3 Impedance and reactance diagrams and their uses
3.4 Per Unit Quantities
3.5 Relationships
3.6 Selection of Base
3.7 Change of base Reduction to common base
3.8 Advantages and application of per unit system
3.9 Numerical based on network reduction by using per unit system
3.10 Load Flow Analysis
3.11 Network topology
3.12 Driving point and transfer admittance
3.13 Concept of Zbus and formulation of Ybus matrix using bus incidence matrix method
3.14 Numerical based on Y bus Matrix
3.15 Power flow equations generalization to n bus systems
3.16 Classification of buses
3.17 NewtonRaphson Method
3.18 Decoupled and Fast decoupled load flow descriptive treatment only
Unit - 4 Symmetrical Fault Analysis
Unit 4
Symmetrical Fault Analysis
4.1 Symmetrical Fault Analysis
4.2 3 Phase short circuit analysis of unloaded alternator
4.3 Subtransient Transient and steady state current and impedances
4.4 D.C. Offset and effect of the instant of shortcircuit on the waveforms
4.5 Estimation of fault current without prefault current for simple power systems
4.6 Selection of CircuitBreakers and Current Limiting Reactors and Their Location in Power System Descriptive Treatment Only
4.7 Numerical Based on symmetrical fault analysis
Unit - 5 Unsymmetrical Fault Analysis
Unit 5
Unsymmetrical Fault Analysis
5.1 Symmetrical components
5.2 Transformation matrices sequence components
5.3 Power in terms of symmetrical components
5.4 Sequence impedances of transmission line and zero sequence networks of transformer
5.5 Solution of unbalances by symmetrical components LL LG and LLG fault analysis of unloaded alternator and simple power systems with and without fault impedance
5.6 Numerical based on symmetrical components and unsymmetrical fault calculation
Unit - 6 HVDC Transmission
Unit 6
HVDC Transmission
6.1 HVDC Transmission
6.2 Classification and components of HVDC system
6.3 Advantages and limitations of HVDC transmission
6.4 Comparison with HVAC system
6.5 Introduction to HVDC control methods constant current constant ignition angle and constant extinction angle control
6.6 HVDC systems in India
6.7 Recent Trends in HVDC System
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Other Subjects of third-year
Power system-i
Control systems
Power electronics
Integrated circuits
Digital signal processing
Introduction to vlsi design
Analog & digital communication system
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