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Ultimate Electrical Power System Engineering Masterclass

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Your complete guide in power system analysis, modelling, load flow and fault studies, for electrical power engineering


1 - Electric Power System Overview
  • 1 - Generation and transmission of electric power
  • 2 - Distribution and consumption of electric power
  • 3 - EBook of The Course.html
  • 3 - Electronic-book-of-the-course.pdf
  • 4 - Single line diagram SLD of power system

  • 2 - Review of Basic Principles
  • 5 - Different types of power in power system
  • 6 - Complex power and power triangle
  • 7 - Example 1 Power analysis
  • 8 - Power factor Definition
  • 9 - Power factor correction
  • 10 - Example 2 power factor correction
  • 11 - Complex Power Flow
  • 12 - Example 3 Power flow in power systems

  • 3 - Balanced ThreePhase Systems
  • 13 - Advantages of 3phase in power system
  • 14 - Balanced 3phase supply
  • 15 - 3phase circuit connections
  • 16 - Line and phase voltages in star loads
  • 17 - StarStar system 4wire
  • 18 - StarStar system 3wire
  • 19 - Example 1 starstar
  • 20 - line and phase currents in delta loads
  • 21 - StarDelta system
  • 22 - Example 2 stardelta
  • 23 - DeltaStar system
  • 24 - Example 3 deltastar
  • 25 - DeltaDelta system
  • 26 - Example 4 deltadelta
  • 27 - 3phase instantenous Power
  • 28 - Power in balanced 3ph system
  • 29 - Power factor improvement in 3ph circuits
  • 30 - Example 5 PF correction in 3ph systems

  • 4 - Generators in Power System
  • 31 - Synchronous generators Alternators
  • 32 - Salient pole vs cylindrical rotor generators
  • 33 - Alternator operation
  • 34 - Induced EMF Equation
  • 35 - Magnetization curve of synchronous generators
  • 36 - Generator model equivalent circuit
  • 37 - Phasor diagram of synchronous generators
  • 38 - Performance parameters of synchronous generator
  • 39 - Power angle characteristics of Synchronous generator
  • 40 - Example 1 Generator model
  • 41 - Example 2 Performance parameters of alternators

  • 5 - Transformers in power systems
  • 42 - Transformer construction and operation
  • 43 - Transformer equivalent circuit
  • 44 - Example 1 Transformer circuit model
  • 45 - No load test of transformers
  • 46 - Short circuit test of transformers
  • 47 - Example 2 Determination of transformer parameters
  • 48 - Transformer Performance
  • 49 - ThreePhase Transformers
  • 50 - Three phase transformer Connections
  • 51 - PerPhase Model of 3Phase Transformer
  • 52 - Example 3 Threephase Transformer efficiency

  • 6 - Transmission Lines in Power Systems
  • 53 - Introduction to Transmission Lines
  • 54 - Transmission line Parameters
  • 55 - Transmission Line Modelling and Performance
  • 56 - Short Transmission Line
  • 57 - Example 1 Short line model
  • 58 - Medium Transmission Line
  • 59 - Example 2 Medium line model
  • 60 - Long Transmission Line
  • 61 - Equivalent PI Model
  • 62 - Lossles Transmission lines
  • 63 - Surge Impedance Loading SIL
  • 64 - Example 3 Long line model SIL

  • 7 - Per Unit System
  • 65 - Concept of Per Unit System
  • 66 - Per Unit Calculations
  • 67 - Solved Example 1 PU calculations
  • 68 - Change of Base
  • 69 - Complete numerical example on PU system part 1
  • 70 - Complete numerical example on PU system part 2

  • 8 - Power Flow analysis
  • 71 - Concept and importance
  • 72 - Important definitions related to load flow study
  • 73 - Types of buses in power system
  • 74 - Bus admittance matrix Ybus
  • 75 - Example 1 Ybus formation
  • 76 - Load flow equations

  • 9 - Load Flow Solution Methods
  • 77 - Approximate method
  • 78 - Example 1 Approximate method
  • 79 - GaussSeidal method
  • 80 - Example 2 GaussSeidal Part 1
  • 81 - Example 2 GaussSeidal Part 2
  • 82 - Line flows and losses
  • 83 - Example 3 Line flows and losses
  • 84 - DC power flow method
  • 85 - Mathematical formulation of DC power flow
  • 86 - Example 4 DC power flow

  • 10 - Fault Analysis in Power System
  • 87 - Fault Analysis Overview
  • 88 - Causes of faults
  • 89 - Faults in power system in a year
  • 90 - Types of power system faults
  • 91 - Consequences of faults
  • 92 - Assumptions in fault studies

  • 11 - Symmetrical Faults Analysis
  • 93 - Synchronous generator reactance under short circuits
  • 94 - Symmetrical fault analysis using Thevenin
  • 95 - Example 1 Fault analysis using Thevenin
  • 96 - Symmetrical fault analysis using bus impedance matrix
  • 97 - Example 2 Fault analysis using bus impedance matrix Zbus
  • 98 - Bus impedance matrix building algorithm
  • 99 - Example 3 Zbus formation

  • 12 - Symmetrical Components and Sequence Networks
  • 100 - Concept of symmetrical components
  • 101 - Formulation of symmetrical components
  • 102 - Important notes
  • 103 - Numerical examples on symmetrical components
  • 104 - Sequence networks
  • 105 - Sequence networks for generator and transmission lines
  • 106 - Sequence networks for transformer
  • 107 - Example 1 0 sequence networks for a given power system
  • 108 - Example 2 0 sequence networks for a given power system

  • 13 - Unsymmetrical Faults analysis
  • 109 - Overview and objective
  • 110 - LG fault analysis
  • 111 - LL fault analysis
  • 112 - LLG fault analysis
  • 113 - Summary and steps of solution
  • 114 - Solved example on unsymmetrical faults part 1
  • 115 - Solved example on unsymmetrical faults part 2

  • 14 - Practical Projects Power Systems Simulations in MATLAB
  • 116 - Project 1 Stand alone synchronous Generator
  • 116 - emf-control-of-synch-gen.zip
  • 117 - Project 2 Synchronous Generator connected to the grid
  • 117 - synchronous-mc-with-grid.zip
  • 118 - Project 3 Simulation of 3ph transformers
  • 118 - simuation-of-3-ph-transformer.zip
  • 119 - Project 4 Transmission line design
  • 120 - Project 5 Power flow study in MATLAB
  • 120 - load-flow-analysis.zip
  • 121 - Project 6 Fault analysis in MATLAB
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