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Ultimate Electrical Transformers for Power Engineering

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Amr Saleh

26:12:19

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  • 1 - What is transformer.mp4
    09:28
  • 2 - How does transformer work.mp4
    09:57
  • 3 - EBook of the course.html
  • 3 - Electrical-Transformers-E-Book.pdf
  • 4 - Voltage Relations of Transformer.mp4
    06:22
  • 5 - Ideal transformer.mp4
    11:27
  • 6 - Real transformer.mp4
    08:07
  • 7 - Transformer exact equivalent circuit.mp4
    08:43
  • 8 - Transformer approximate equivalent circuit.mp4
    09:03
  • 9 - Phasor diagram of ideal transformer.mp4
    09:11
  • 10 - Phasor diagram of real transformer.mp4
    14:57
  • 11 - Phasor diagram of approximate equivalent circuit.mp4
    06:58
  • 12 - Solved example 1.mp4
    07:34
  • 13 - Solved example 2.mp4
    10:31
  • 14 - Solved example 3.mp4
    09:33
  • 15 - Why is transformer powerefficient device.mp4
    06:57
  • 16 - Transformer losses.mp4
    07:45
  • 17 - Eddy current losses.mp4
    09:12
  • 18 - Hysteresis losses.mp4
    11:30
  • 19 - Transformer efficiency.mp4
    10:30
  • 20 - Condition for maximum efficiency.mp4
    02:58
  • 21 - Transformer voltage regulation.mp4
    02:24
  • 22 - Open circuit test on transformer.mp4
    06:54
  • 23 - Short circuit test on transformer.mp4
    05:07
  • 24 - Solved example 1.mp4
    09:35
  • 25 - Solved example 2.mp4
    05:13
  • 26 - Construction and types.mp4
    10:39
  • 27 - Three phase transformer connections.mp4
    11:18
  • 28 - Per phase model.mp4
    07:09
  • 29 - Per unit system in transformers.mp4
    10:57
  • 30 - Solved example 1.mp4
    06:34
  • 31 - Transformer per unit parameters.mp4
    16:48
  • 32 - Another formula for transformer regulation.mp4
    09:36
  • 33 - Solved example 2 part 1.mp4
    12:54
  • 34 - Solved example 2 part 2.mp4
    09:08
  • 35 - Case study Effect of capacitor banks on transformer performance.mp4
    10:25
  • 36 - Transformer vector group.mp4
    14:18
  • 37 - How to obtain winding connections of any transformer vector group.mp4
    07:16
  • 38 - Phasor and winding diagram of Yy0 and Yy6 connections.mp4
    08:30
  • 39 - Phasor and winding diagram of Yd1 and Dy1 connections.mp4
    07:53
  • 40 - Phasor and winding diagram of Yd11 and Dy11 connections.mp4
    06:16
  • 41 - Phasor and winding diagram of Yd5 and Dy5 connections.mp4
    08:54
  • 42 - Parts of power transformer.mp4
    09:37
  • 43 - Transformer core manufacturing.mp4
    07:19
  • 44 - Core type transformer.mp4
    11:45
  • 45 - Shell type transformer.mp4
    06:29
  • 46 - Stepped core construction.mp4
    10:43
  • 47 - Transformer winding manufacturing.mp4
    08:33
  • 48 - Helical winding.mp4
    05:53
  • 49 - Crossover winding.mp4
    04:11
  • 50 - Disc winding.mp4
    06:41
  • 51 - Sandwich winding.mp4
    04:10
  • 52 - Transformer insulation.mp4
    05:54
  • 53 - Insulation classes.mp4
    05:26
  • 54 - Transformer tank.mp4
    10:20
  • 55 - Transformer Oil.mp4
    07:12
  • 56 - Conservator tank.mp4
    05:26
  • 57 - Breather unit.mp4
    07:23
  • 58 - Buchholz relay.mp4
    11:54
  • 59 - Explosion vent.mp4
    04:04
  • 60 - Terminals and Bushings.mp4
    09:07
  • 61 - Surge arrester.mp4
    11:02
  • 62 - Rod gap.mp4
    07:01
  • 63 - Cooling methods for drytype transformers.mp4
    07:27
  • 64 - Cooling methods for oilimmersed transformers.mp4
    11:15
  • 65 - Temperature rise and thermal rating.mp4
    11:47
  • 66 - Temperature rise calculation.mp4
    11:37
  • 67 - Relation between temperature rise and transformer loading.mp4
    05:05
  • 68 - Example Temperature rise calculation.mp4
    13:15
  • 69 - Harmonics definition and causes.mp4
    08:38
  • 70 - Effect of harmonics on transformer.mp4
    12:07
  • 71 - Harmonics mitigation and Kfactor transformers.mp4
    12:21
  • 72 - Inrush current in transformer.mp4
    17:42
  • 73 - Over fluxing.mp4
    09:57
  • 74 - Effects of transformer saturation on transformer performance.mp4
    04:59
  • 75 - Noise in transformers.mp4
    09:47
  • 76 - Transformer earthing.mp4
    13:36
  • 77 - Transformers Classification.mp4
    16:10
  • 78 - Transformers arrangements in the electric power system.mp4
    13:08
  • 79 - Power transformers.mp4
    06:06
  • 80 - Distribution transformers.mp4
    10:14
  • 81 - Oil Dry and SF6 transformers.mp4
    05:28
  • 82 - Power transformers Vs Distribution Transformers.mp4
    09:49
  • 83 - What is Current Transformer.mp4
    13:12
  • 84 - Equivalent Circuit Burden of CT.mp4
    10:25
  • 85 - Types of current transformers.mp4
    08:34
  • 86 - Saturation of Current Transformer.mp4
    11:21
  • 87 - Knee Point Voltage of the CT.mp4
    02:18
  • 88 - Example Determining the maximum burden of the CT.mp4
    03:54
  • 89 - Using CT in Electrical Networks General Application Rule.mp4
    07:57
  • 90 - Specifications and Definitions of CT Parameters.mp4
    10:31
  • 91 - Current Transformers Used For Measuring.mp4
    11:48
  • 92 - Current Transformers Used For Protection.mp4
    07:50
  • 93 - Example of Current Transformer Rating Plate.mp4
    04:57
  • 94 - What is Voltage Transformer.mp4
    04:28
  • 95 - General Application Rule of VT.mp4
    05:30
  • 96 - Specifications and Definitions of Voltage Transformer Parameters.mp4
    07:46
  • 97 - Voltage Transformers Used For Measuring.mp4
    05:40
  • 98 - Voltage Transformers Used For Protection.mp4
    05:07
  • 99 - Key Differences between CT VT.mp4
    06:33
  • 100 - What is Auto transformer.mp4
    10:42
  • 101 - Power rating advantage of auto transformer.mp4
    07:12
  • 102 - Current and voltage relations in auto transformer.mp4
    09:09
  • 103 - Copper Savings in auto transformer.mp4
    13:02
  • 104 - Advantages of auto transformer.mp4
    05:26
  • 105 - Disadvantages of auto transformer.mp4
    05:26
  • 106 - Applications and use of autotransformers in power system.mp4
    12:09
  • 107 - Earthing transformer.mp4
    10:48
  • 108 - Applications of grounding transformer.mp4
    09:12
  • 109 - Phase shifting transformer.mp4
    16:30
  • 110 - Booster transformer.mp4
    11:01
  • 111 - Three winding transformer.mp4
    11:12
  • 112 - Voltage stabilization by tertiary winding.mp4
    13:32
  • 113 - HV testing transformer.mp4
    10:59
  • 114 - HV testing transformer vs Power transformer.mp4
    04:53
  • 115 - Why do we need transformer protection.mp4
    05:04
  • 116 - Types of transformer faults.mp4
    11:09
  • 117 - Protection functions in transformer.mp4
    09:20
  • 118 - Corebalance leakage protection.mp4
    11:48
  • 119 - Combined Leakage and phase fault Protection.mp4
    14:23
  • 120 - Differential protection of transformers.mp4
    14:10
  • 121 - CT connections in transformer differential protection.mp4
    12:13
  • 122 - Problems and solutions with transformer differential protection.mp4
    10:17
  • 123 - Percentage Biased Differential relay.mp4
    09:31
  • 124 - Characteristics of biased relay.mp4
    04:50
  • 125 - Example 1 How to calculate CT ratios for differential protection.mp4
    11:31
  • 126 - Example 2 How to set differential relay settings.mp4
    10:04
  • 127 - Harmonic restraint relay.mp4
    13:05
  • 128 - Over fluxing protection VoltHertz relay.mp4
    12:11
  • 129 - Example 3 VF relay setting adjustment.mp4
    03:44
  • 130 - Over current Unrestricted earth fault relay.mp4
    10:33
  • 131 - Restricted earth fault protection.mp4
    08:36
  • 132 - Difference between REF and differential protection.mp4
    07:52
  • 133 - Oil temperature trip relay.mp4
    06:12
  • 134 - Winding temperature trip relay.mp4
    09:59
  • 135 - Pressure relief device PRD.mp4
    04:04
  • 136 - Insulation resistance IR test.mp4
    09:43
  • 137 - Remarks on Megger test.mp4
    08:03
  • 138 - What is Tan Delta test.mp4
    12:34
  • 139 - Delta 4000 working principle.mp4
    13:30
  • 140 - Dielectric loss test procedure.mp4
    09:15
  • 141 - Partial discharge PD test.mp4
    15:31
  • 142 - HiPot test.mp4
    14:25
  • 143 - Induced voltage test.mp4
    08:15
  • 144 - Impulse voltage test.mp4
    10:25
  • 145 - Surge generator for impulse test.mp4
    08:19
  • 146 - Transformer oil sampling.mp4
    08:16
  • 147 - Oil breakdown voltage BDV test.mp4
    11:18
  • 148 - Dissolved gas analysis DGA Test.mp4
    10:20
  • 149 - Rogers ratio method of DGA.mp4
    05:37
  • 150 - Transformer turns ratio TTR test.mp4
    11:58
  • 151 - Transformer turns ratio test using TTR testing kit.mp4
    12:55
  • 152 - Winding resistance test.mp4
    18:13
  • 153 - Winding resistance test using winding resistance testing kit.mp4
    06:55
  • 154 - Magnetizing current test.mp4
    14:51
  • 155 - Percentage impedance test.mp4
    12:23
  • 156 - Vector group test.mp4
    17:42
  • 157 - Simulation of 1ph transformers.mp4
    17:58
  • 157 - simulation-of-single-ph-transformer.zip
  • 158 - Open circuit test of 1ph transformer in MATLABSimulink.mp4
    14:29
  • 158 - no-load-test-1-ph-transformer.zip
  • 159 - Short circuit test of 1ph transformer in MATLABSimulink.mp4
    11:30
  • 159 - short-ct-test-1-ph-transformer.zip
  • 160 - Efficiency Losses and Voltage regulation in MATLABSimulink.mp4
    19:11
  • 160 - efficiency-losses-volatge-regulation.zip
  • 161 - Design of 3ph transformer in MATLABSimulink.mp4
    25:43
  • 161 - simuation-of-3-ph-transformer.zip
  • 162 - Practical transformer Vs Ideal transformer MATLABSimulink.mp4
    10:36
  • 162 - practical-and-ideal-transformer.zip
  • 163 - No load test of 3ph transformer MATLABSimulink.mp4
    10:37
  • 163 - open-circuit-test-of-3-ph-transformer.zip
  • 164 - Short circuit test of 3ph transformer MATLABSimulink.mp4
    12:58
  • 164 - short-circuit-test-of-3-ph-transformer.zip
  • Description


    Expertise in Power Transformers as one of important electrical machines for electrical engineering - From Zero to Hero!

    What You'll Learn?


    • Understand the operation of transformers in electric networks
    • Identify the difference between ideal and real transformers
    • Learn how to obtain the approximate and exact equivalent circuits of transformers
    • Realize the phasor diagram of ideal and practical transformers
    • Realize the different types of transformer losses
    • Understand the efficiency and voltage regulation concepts for assessing the transformer performance
    • Learn how to perform open and short circuit tests to obtain transformer parameters
    • Realize the construction, types, and connections of three phase transformers
    • Learn how to get the per phase model of three phase transformers
    • Learn how to get the per unit transformer parameters
    • Case study on the effect of capacitor banks on transformer performance
    • Complete and simple explanation on transformer vector grroup
    • Learn how to obtain winding connections of any transformer vector group
    • Realize the different parts of power transformers
    • Learn about the core manufacturing
    • Core type vs. Shell type transformers
    • Learn about the winding manufacturing
    • Identify Helical, Crossover, Disc, and Sandwich windings
    • Relaize the importance of transformer tank and conservator tank
    • Relaize the importance of transformer oil
    • Identify the function of Breather unit, Buchholz relay, Surge arrester, and Rod gap in power transformers
    • Realize the importance of transformer terminals and bushings
    • Learn about transformer cooling
    • Learn how to practically calculate the transformer temperature rise
    • Study the effect of harmonics on transformer operation
    • Learn about the harmonics mitigation and K-factor transformers
    • Complete study on transformer inrush current
    • Study the effect of overfluxing and saturation on transformer operation
    • Learn about the reasons of humming noise coming from transformer
    • Learn how to provide the earting of transformer
    • Identify the transformers arrangements in the electric power system
    • Power transformers Vs. Distribution Transformers
    • Learn abut different types of transformers in electric network and their applications
    • Complete study on current transformers and voltage transformers
    • Complete study on auto transformers
    • Learn about shifting, earthing, and booster transformers
    • Learn about tertiary and high voltagetesting transformers
    • Complete course on transformer protection
    • Complete course on transformer testing and commissioning
    • Complete MATLAB Simulations on electrical transformers

    Who is this for?


  • Electrical engineering students having passion to learn about electrical transformers from scratch
  • Engineers and Professionals who work in the Transformer supplier/vendor side
  • Technicians, Electricians, and Supervisors who want to design, maintain, commission or do anything with transformers
  • What You Need to Know?


  • Electrical engineering fundamentals
  • Passion to learn about electrical power transformers from scratch
  • More details


    Description

               Hi and welcome everyone to our course " Ultimate Electrical Transformers for Power Engineering"


    In this course, you are going to learn everything about electrical power transformers starting from the operation, theory, and design of three phase transformers moving to realizing the different types of transformers and their applications in the electric network, ending with a complete study on transformer protection, testing, and commissioning.

    Thus, this course is designed to take you from zero to hero concerning electric power transformer engineering field.


    • The course is structured as follows:

    Firstly, a complete overview on the transformer theory and operation is illustrated through the following topics:

    1. Transformer theory of operation

    2. Ideal vs. Real transformers

    3. Transformer equivalent circuit (Exact and approximate)

    4. Phasor diagram of ideal and real transformers

    Then, the next topic will be about the assessment of transformer performance through the following topics:

    1. Transformer losses

    2. Hysteresis losses vs. Eddy current losses

    3. Transformer efficiency

    4. Transformer regulation

    5. How to perform open and short circuit tests to obtain transformer parameters

    Then, a complete study on three phase transformers is introduced since 99% of power transformers are actually three phase transformers. Thus, three phase transformers are explained in depth through the following topics:

    1. Construction, types, and connections of three phase transformers

    2. How to get the per phase model of three phase transformers ?

    3. Per unit analysis in three phase transformers

    4. How to get the per unit transformer parameters

    5. Transformer vector group

    6. How to obtain winding connections of any transformer vector group with examples ?

    Then, you are going to learn about the manufacturing and construction of power transformers explaining all the transformer parts. The following topics will be covered:

    1. Transformer core manufacturing

    2. Core type vs. Shell type transformers

    3. Transformer winding manufacturing

    4. Helical, Crossover, Disc, and Sandwich windings

    5. Transformer main and conservator tank

    6. Importance of transformer oil

    7. Breather unit, Buchholz relay, Surge arrester, and Rod gap in power transformers

    8. Transformer terminals and bushings

    9. Transformer cooling methods

    Then, the next topic will be about the different factors that affect the transformer operation. These factors are discussed through the following points:

    1. Temperature rise and thermal rating

    2. Relation between temperature rise and transformer loading

    3. Effect of harmonics on transformers

    4. Harmonics mitigation and K-factor transformers

    5. Inrush current in transformer

    6. Over fluxing and its effect on transformers

    7. Reasons for humming noise coming from transformer

    8. Earthing of transformers

    The next topic is about a complete study on different types of transformers and their applications in power systems. The following types of transformers are discussed in details:

    1. Power transformers

    2. Distribution transformers

    3. Current Transformers (CT)

    4. Voltage Transformers (VT or PT)

    5. Auto Transformers

    6. Earthing (grounding )transformer

    7. Phase shifting transformer (PST)

    8. Booster transformer

    9. Three winding transformer (tertiary winding)

    10. High voltage testing transformer (HVT)

    Then, we are going to a complete study on transformer protection where we are going to know identify the different transformer faults and provide a suitable protection device to this type of fault. The following outlines are discussed in depth:

    1. Types of transformer faults

    2. Protection functions in transformer

    3. Core-balance leakage protection

    4. Combined Leakage and phase fault Protection

    5. Differential protection of transformers

    6. CT connections in transformer differential protection

    7. How to calculate CT ratios for differential protection

    8. Harmonic restraint relay

    9. Over fluxing protection (Volt/Hertz relay)

    10. Restricted earth fault protection

    11. Oil and winding temperature trip relays

    12. Pressure relief device (PRD)

    Then, The next topic is about transformer testing, commissioning, and diagnostics where we are going to perform routine, type, and special test on power transformers to ensure the healthiness of the transformer before its energization on the site. The following tests are performed and explained:

    1. Insulation resistance (IR test)

    2. Tan Delta test (Dielectric loss test)

    3. Partial discharge (PD test)

    4. Hi-Pot test (Applied voltage test)

    5. Induced voltage test

    6. Impulse voltage test

    7. Oil breakdown voltage (BDV) test

    8. Dissolved gas analysis (DGA) Test

    9. Transformer turns ratio (TTR) test

    10. Winding resistance test

    11. Magnetizing current test

    12. Percentage impedance test

    13. Vector group test

    Finally, Complete MATLAB Simulations on electrical transformers are done such as:

    1. MATLAB Simulation of 1-ph and 3-ph transformers

    2. Practical transformer Vs. Ideal transformer in MATLAB/Simulink

    3. Efficiency, Losses and Voltage regulation calculations in MATLAB/Simulink

    4. No load and short circuit test of 1-ph and 3-ph transformers in MATLAB/Simulink


    So, if you are Looking for a COMPREHENSIVE course about Electric Power Transformer Engineering ?

                  If your answer is YES, then you're definitely in the right place.

    Who this course is for:

    • Electrical engineering students having passion to learn about electrical transformers from scratch
    • Engineers and Professionals who work in the Transformer supplier/vendor side
    • Technicians, Electricians, and Supervisors who want to design, maintain, commission or do anything with transformers

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    Hi,My name is Amr Saleh. I'm a Teaching Assistant in Electrical Power and Machines Engineering, Ain Shams University.Through my career,  I teach many courses related to different topics of electrical power engineering including Power Systems , Power Electronics , Electric Machines, High Voltage and also Electric controls and protection.I gained knowledge in these areas of Electrical Engineering during my undergraduate studies and my Masters degree, as well as during my professional career, and am excited to teach about them in Udemy. In fact, I love teaching electrical engineering topics and I like both the theory behind a topic as well as real-world applications in very simple way to make my students understand the complete picture of the topic.My goal is to deliver my knowledge about electrical engineering to my students.
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 163
    • duration 26:12:19
    • Release Date 2023/10/13