| 0 | 740.5 KB | ||
| 1 - Generation and transmission of electric power.mp4 | 72.5 MB | ||
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| 10 - Example 2 power factor correction.mp4 | 32.7 MB | ||
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| 95 | 371.2 KB | ||
| 96 | 478.3 KB | ||
| 97 | 251.6 KB | ||
| 98 | 603.8 KB | ||
| 99 | 994.6 KB | ||
| 100 - Concept of symmetrical components.mp4 | 74.7 MB | ||
| 100 | 305.6 KB | ||
| 101 - Formulation of symmetrical components.mp4 | 52.7 MB | ||
| 101 | 888.2 KB | ||
| 102 - Important notes.mp4 | 40.4 MB | ||
| 103 - Numerical examples on symmetrical components.mp4 | 55.3 MB | ||
| 103 | 371.8 KB | ||
| 104 - Sequence networks.mp4 | 24.6 MB | ||
| 104 | 513.2 KB | ||
| 105 - Sequence networks for generator and transmission lines.mp4 | 24.6 MB | ||
| 105 | 342.5 KB | ||
| 106 - Sequence networks for transformer.mp4 | 27.6 MB | ||
| 106 | 558.6 KB | ||
| 107 - Example 1 0 sequence networks for a given power system.mp4 | 72.9 MB | ||
| 107 | 519.4 KB | ||
| 108 - Example 2 0 sequence networks for a given power system.mp4 | 35.9 MB | ||
| 108 | 89.2 KB | ||
| 109 - Overview and objective.mp4 | 63.1 MB | ||
| 11 - Complex Power Flow.mp4 | 107.2 MB | ||
| 109 | 485.6 KB | ||
| 110 - LG fault analysis.mp4 | 83 MB | ||
| 110 | 49.5 KB | ||
| 111 | 166.3 KB | ||
| 111 - LL fault analysis.mp4 | 84.6 MB | ||
| 112 | 314 KB | ||
| 112 - LLG fault analysis.mp4 | 83.5 MB | ||
| 113 | 838.1 KB | ||
| 113 - Summary and steps of solution.mp4 | 38.5 MB | ||
| 114 - Solved example on unsymmetrical faults part 1.mp4 | 105.5 MB | ||
| 114 | 508.3 KB | ||
| 115 - Solved example on unsymmetrical faults part 2.mp4 | 64.1 MB | ||
| 115 | 778.9 KB | ||
| 116 - Project 1 Stand alone synchronous Generator.mp4 | 128.4 MB | ||
| 116 | 641.1 KB | ||
| 116 - emf-control-of-synch-gen.zip | 18.1 KB | ||
| 117 - Project 2 Synchronous Generator connected to the grid.mp4 | 94.7 MB | ||
| 117 | 455.4 KB | ||
| 117 - synchronous-mc-with-grid.zip | 17.5 KB | ||
| 118 | 531.6 KB | ||
| 118 - Project 3 Simulation of 3ph transformers.mp4 | 204.2 MB | ||
| 118 - simuation-of-3-ph-transformer.zip | 19.2 KB | ||
| 119 - Project 4 Transmission line design.mp4 | 179 MB | ||
| 12 - Example 3 Power flow in power systems.mp4 | 56 MB | ||
| 120 - Project 5 Power flow study in MATLAB.mp4 | 161.6 MB | ||
| 120 - load-flow-analysis.zip | 17.1 KB | ||
| 121 - Project 6 Fault analysis in MATLAB.mp4 | 108.4 MB | ||
| 13 - Advantages of 3phase in power system.mp4 | 91.1 MB | ||
| 14 - Balanced 3phase supply.mp4 | 117.5 MB | ||
| 15 - 3phase circuit connections.mp4 | 33.5 MB | ||
| 16 - Line and phase voltages in star loads.mp4 | 105.3 MB | ||
| 17 - StarStar system 4wire.mp4 | 91.4 MB | ||
| 18 - StarStar system 3wire.mp4 | 66.5 MB | ||
| 19 - Example 1 starstar.mp4 | 39 MB | ||
| 2 - Distribution and consumption of electric power.mp4 | 51.8 MB | ||
| 20 - line and phase currents in delta loads.mp4 | 61 MB | ||
| 21 - StarDelta system.mp4 | 55.6 MB | ||
| 22 - Example 2 stardelta.mp4 | 29.2 MB | ||
| 23 - DeltaStar system.mp4 | 50.2 MB | ||
| 24 - Example 3 deltastar.mp4 | 40 MB | ||
| 25 - DeltaDelta system.mp4 | 42.6 MB | ||
| 26 - Example 4 deltadelta.mp4 | 39.7 MB | ||
| 27 - 3phase instantenous Power.mp4 | 87.4 MB | ||
| 28 - Power in balanced 3ph system.mp4 | 85.1 MB | ||
| 29 - Power factor improvement in 3ph circuits.mp4 | 49.1 MB | ||
| 3 - EBook of The Course.html | 204.8 B | ||
| 3 - Electronic-book-of-the-course.pdf | 29.5 MB | ||
| 30 - Example 5 PF correction in 3ph systems.mp4 | 116.3 MB | ||
| 31 - Synchronous generators Alternators.mp4 | 85.8 MB | ||
| 32 - Salient pole vs cylindrical rotor generators.mp4 | 70.2 MB | ||
| 33 - Alternator operation.mp4 | 91.6 MB | ||
| 34 - Induced EMF Equation.mp4 | 56.1 MB | ||
| 35 - Magnetization curve of synchronous generators.mp4 | 33 MB | ||
| 36 - Generator model equivalent circuit.mp4 | 79.6 MB | ||
| 37 - Phasor diagram of synchronous generators.mp4 | 51.2 MB | ||
| 38 - Performance parameters of synchronous generator.mp4 | 74.3 MB | ||
| 39 - Power angle characteristics of Synchronous generator.mp4 | 74.3 MB | ||
| 4 - Single line diagram SLD of power system.mp4 | 47.4 MB | ||
| 40 - Example 1 Generator model.mp4 | 64.1 MB | ||
| 41 - Example 2 Performance parameters of alternators.mp4 | 92.6 MB | ||
| 42 - Transformer construction and operation.mp4 | 68.3 MB | ||
| 43 - Transformer equivalent circuit.mp4 | 97.4 MB | ||
| 44 - Example 1 Transformer circuit model.mp4 | 60.4 MB | ||
| 45 - No load test of transformers.mp4 | 32.8 MB | ||
| 46 - Short circuit test of transformers.mp4 | 27.5 MB | ||
| 47 - Example 2 Determination of transformer parameters.mp4 | 59.8 MB | ||
| 48 - Transformer Performance.mp4 | 89.8 MB | ||
| 49 - ThreePhase Transformers.mp4 | 48.1 MB | ||
| 5 - Different types of power in power system.mp4 | 125.1 MB | ||
| 50 - Three phase transformer Connections.mp4 | 81.8 MB | ||
| 51 - PerPhase Model of 3Phase Transformer.mp4 | 45 MB | ||
| 52 - Example 3 Threephase Transformer efficiency.mp4 | 28.4 MB | ||
| 53 - Introduction to Transmission Lines.mp4 | 86 MB | ||
| 54 - Transmission line Parameters.mp4 | 71.8 MB | ||
| 55 - Transmission Line Modelling and Performance.mp4 | 86.5 MB | ||
| 56 - Short Transmission Line.mp4 | 57.8 MB | ||
| 57 - Example 1 Short line model.mp4 | 105 MB | ||
| 58 - Medium Transmission Line.mp4 | 37.5 MB | ||
| 59 - Example 2 Medium line model.mp4 | 65 MB | ||
| 6 - Complex power and power triangle.mp4 | 73.1 MB | ||
| 60 - Long Transmission Line.mp4 | 102.3 MB | ||
| 61 - Equivalent PI Model.mp4 | 79.1 MB | ||
| 62 - Lossles Transmission lines.mp4 | 47.4 MB | ||
| 63 - Surge Impedance Loading SIL.mp4 | 83.4 MB | ||
| 64 - Example 3 Long line model SIL.mp4 | 61.6 MB | ||
| 65 - Concept of Per Unit System.mp4 | 71.4 MB | ||
| 66 - Per Unit Calculations.mp4 | 47.8 MB | ||
| 67 - Solved Example 1 PU calculations.mp4 | 69.4 MB | ||
| 68 - Change of Base.mp4 | 38.6 MB | ||
| 69 - Complete numerical example on PU system part 1.mp4 | 85.2 MB | ||
| 7 - Example 1 Power analysis.mp4 | 55.8 MB | ||
| 70 - Complete numerical example on PU system part 2.mp4 | 136 MB | ||
| 71 - Concept and importance.mp4 | 45.1 MB | ||
| 72 - Important definitions related to load flow study.mp4 | 56.1 MB | ||
| 73 - Types of buses in power system.mp4 | 54.8 MB | ||
| 74 - Bus admittance matrix Ybus.mp4 | 87.7 MB | ||
| 75 - Example 1 Ybus formation.mp4 | 103 MB | ||
| 76 - Load flow equations.mp4 | 66.5 MB | ||
| 77 - Approximate method.mp4 | 37.7 MB | ||
| 78 - Example 1 Approximate method.mp4 | 123.6 MB | ||
| 79 - GaussSeidal method.mp4 | 92.8 MB | ||
| 8 - Power factor Definition.mp4 | 117 MB | ||
| 80 - Example 2 GaussSeidal Part 1.mp4 | 106.4 MB | ||
| 81 - Example 2 GaussSeidal Part 2.mp4 | 61 MB | ||
| 82 - Line flows and losses.mp4 | 36.5 MB | ||
| 83 - Example 3 Line flows and losses.mp4 | 78 MB | ||
| 84 - DC power flow method.mp4 | 42.5 MB | ||
| 85 - Mathematical formulation of DC power flow.mp4 | 85.2 MB | ||
| 86 - Example 4 DC power flow.mp4 | 114.8 MB | ||
| 87 - Fault Analysis Overview.mp4 | 85.9 MB | ||
| 88 - Causes of faults.mp4 | 39.1 MB | ||
| 89 - Faults in power system in a year.mp4 | 31.2 MB | ||
| 9 - Power factor correction.mp4 | 77.8 MB | ||
| 90 - Types of power system faults.mp4 | 81.5 MB | ||
| 91 - Consequences of faults.mp4 | 73.6 MB | ||
| 92 - Assumptions in fault studies.mp4 | 41.8 MB | ||
| 93 - Synchronous generator reactance under short circuits.mp4 | 73.4 MB | ||
| 94 - Symmetrical fault analysis using Thevenin.mp4 | 65.9 MB | ||
| 95 - Example 1 Fault analysis using Thevenin.mp4 | 51.9 MB | ||
| 96 - Symmetrical fault analysis using bus impedance matrix.mp4 | 56.2 MB | ||
| 97 - Example 2 Fault analysis using bus impedance matrix Zbus.mp4 | 119.6 MB | ||
| 98 - Bus impedance matrix building algorithm.mp4 | 75.5 MB | ||
| 99 - Example 3 Zbus formation.mp4 | 89 MB | ||
| TutsNode.net.txt | 102.4 B | ||
| [TGx]Downloaded from torrentgalaxy.to .txt | 614.4 B | ||
| 119 | 397.8 KB | ||
| ▲ 244 total files | |||
Description
Hi and welcome everyone to our course “Ultimate Electrical Power System Engineering Masterclass”
In this course, you are going to learn everything about power system analysis starting from the power system basics and fundamentals of single phase and three phase electric systems moving to designing and modelling different power system components such as: generators, transformers, and transmission lines, ending with a complete power system studies such as load flow studies and power system faults analysis.
Thus, this course will be your complete guide in one of the main areas of power engineering: ( power system analysis )
The course is structured as follows:
Firstly, an overview on the power system structure is illustrated through the following topics:
Generation, transmission, distribution, and consumption of electric power
How to draw a single line diagram (SLD) of any power system
Then, the next topic will be about a review on basic electrical engineering concepts to be a quick refresh for you. The following topics will be covered:
Different types of powers in power system
Complex power, power triangle, and power factor definitions
power factor correction
Complex power flow in any power system
Then, a complete study of three phase systems is introduced since 99% of practical electric networks are actually three phase systems. Thus, three phase circuits are explained in depth through the following topics:
Why we need three phase systems?
Three phase supply and load
Different 3-ph connections (star-star), (star-delta), (delta-star), (delta-delta)
Difference between (3-wire) and (4-wire) 3-ph systems
The relations between line and phase currents and voltages
Power analysis in 3-ph systems
Power factor improvement in 3-ph circuits
Then, you are going to learn the modelling and characteristics of generators in power systems starting from the operation and construction of alternators moving to measuring the performance indices of synchronous generators. The following topics will be covered:
Construction and operation of alternators
Salient pole vs. Cylindrical rotor generators
Generator model in power systems
Generator phasor diagram and characteristics
Generator performance parameters
Power angle curve of synchronous generators
The next topic is about transformers and their use in power systems. We are going to discuss how the transformers work and their importance in power systems through the following outlines:
Construction and operation of transformers
Transformer equivalent circuit
Tests performed on transformers
Transformer efficiency and regulation
Three-phase transformer types and connections
Per phase model of three phase transformer
After that, we are going to a complete modelling of different types of transmission lines with assessing the transmission line performance in electric networks through the following topics:
Overhead lines vs. Under ground cables (UGC)
Transmission line modelling and performance
Short, medium, and long line models
Lossless transmission lines
Surge impedance loading (SIL)
Now, after modelling and analyzing different power system components, lets move to the per unit system and learn the concept and importance of per unit in power system analysis through the following outlines:
Concept of per unit
Per unit calculations
How to draw per unit reactance diagram
Change of base
Numerical examples on practical power systems
Then, we are going to a complete power flow analysis where we are going to know the electrical parameters for any power system under any operating conditions. The following topics are discussed
Concept and importance of power flow study
Definitions in power flow analysis
Types of power system buses
Formation of Ybus
Approximate method
Iterative methods for load flow analysis
Gauss-Seidal method
Power flows and losses analysis
DC power flow method
Numerical examples on practical power systems
Then, a complete fault analysis is performed on power systems to find the fault current, bus voltages and line current during the fault. All these outlines are discussed
Definition, causes, types, and consequences of electric faults
Complete symmetrical fault analysis using thevenin and Zbus
Symmetrical components and sequence networks
Complete unsymmetrical fault analysis using thevenin and Zbus
Finally, after the complete analysis of power system, practical projects are performed on MATLAB related to power systems as follows :
Project 1 – Stand alone synchronous Generator
Project 2 – Synchronous Generator connected to the grid
Project 3 – Simulation of 3-ph transformers
Project 4 – Transmission line design
Project 5 – Power flow study in MATLAB
Project 6 – Fault analysis in MATLAB
So, if you are Looking for a COMPREHENSIVE course about Electrical power system analysis engineering for power system modelling, design and analysis ?
If your answer is YES, then you’re definitely in the right place.
Who this course is for:
Any one having the passion to learn power system engineering from scratch
Electrical power engineers with an interest in power system analysis
Requirements
Electrical engineering fundamentals
Passion to learn power system engineering
Last Updated 3/2023
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Udemy - Ultimate Electrical Design Course From Zero To Hero Hv Mv Lv Posted by
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| 14.6 GB | tutsnode | 4 years | 4 | 2 | |
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[ FreeCourseWeb ] Udemy - Ultimate Electrical Power Engineering Distribution Course Posted by
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