Ultimate Electrical DC Machines Course for Complete Beginners
Learn about DC machines without any previous knowledge
Electrical Engineering,Teaching & Academics
Lectures -21
Duration -4 hours
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Course Description
"Complete DC Machines Course for Electrical Engineering"
Throughout the course you will learn:
Importance and construction of DC machines.
Armature winding and emf equation.
Separately excited DC machine.
Shunt and series DC machines.
Types and applications of compound DC motors.
Torque-speed characteristics and speed control of separately excited DC motor.
Torque-speed characteristics of series DC motor.
Starting of DC machine.
Armature reaction in DC machines.
Losses in DC machines.
Dozens of solved examples on all types of DC machines.
All of these topics are in a step by step lessons with many solved examples.
Goals
Importance and construction of DC machines.
Armature Winding And EMF Equation.
Separately Excited DC Machine.
Shunt And Series DC Machines.
Types And Applications Of Compound DC Motors.
Torque-Speed Characteristics And Speed Control Of Separately Excited DC Motor.
Torque-Speed Characteristics Of Series DC Motor.
Starting Of DC Machine.
Losses In DC Machines.
Dozens Of Solved Examples On All Types Of DC Machines.
Prerequisites
- Must have knowledge about fundamentals of electric circuits or taken my course for electric circuits to understand the analysis of circuits.
Curriculum
Check out the detailed breakdown of what’s inside the course
DC Machines
21 Lectures
- Importance and Construction of DC Machines 26:05 26:05
- Armature Winding and EMF Equation 39:33 39:33
- Solved Example 1 04:35 04:35
- Solved Example 2 03:50 03:50
- Solved Example 3 07:17 07:17
- Solved Example 4 06:01 06:01
- Separately Excited DC Machine 20:41 20:41
- Shunt and Series DC Machines 25:27 25:27
- Solved Example 1 on Separately Excited DC Machine 06:57 06:57
- Solved Example 2 on Separately Excited DC Machine 06:54 06:54
- Solved Example 3 on Shunt Generator 04:12 04:12
- Solved Example 4 on Shunt Generator 06:41 06:41
- Solved Example 5 on Series DC Generator 06:01 06:01
- Types and Applications of Compound DC Motors 07:19 07:19
- Torque-Speed Characteristics and Speed Control of Separately Excited DC Motor 33:11 33:11
- Torque-Speed Characteristics of Series DC Motor 08:12 08:12
- Solved Example 1 on Speed Control 07:56 07:56
- Solved Example 2 on Speed Control 05:40 05:40
- Starting of DC Machine 13:38 13:38
- Armature Reaction in DC Machines 10:24 10:24
- Losses in DC Machines 03:37 03:37
Instructor Details
Ahmed Mahdy
About me
I am Ahmed Mahdy an electrical power engineer, researcher, and the founder of Khadija Academy. I am also an electrical bestselling instructor at more than 30 platforms, teaching electrical engineering. I have helped over 80,000 students from 196 countries achieve career success with simple and easy courses in the last 8 years. In addition, I have a YouTube educational engineering channel called" Khadija Academy", where I regularly post videos related to electrical engineering. In 2018, I was nominated among the top 10% of instructors on Tutorialspoint, besides currently ranking among the top instructors in the engineering sector of Tutorialspoin.
I have received the award for the best master's thesis in the Faculty of Engineering - Ain Shams University for 2022/2023.
Some of my published research works in the top electrical engineering journals worldwide:
1- Transient stability improvement of wave energy conversion systems connected to power grid using anti-windup-coot optimization strategy - Energy Journal - Impact Factor of 9.0.
2- Nonlinear Modeling and Real-Time Simulation of a Grid-Connected AWS Wave Energy Conversion System - IEEE Transactions on Sustainable Energy - Impact Factor of 8.8.
3- Modeling and optimal operation of hybrid wave energy and PV system feeding supercharging stations based on golden jackal optimal control strategy - Energy Journal - Impact Factor of 9.0.
4- State-of-the-Art of the most commonly adopted wave energy conversion systems - Ain Shams Engineering Journal - Impact Factor of 6.0.
5- Optimal Design of Fractional-Order PID Controllers for a Nonlinear AWS Wave Energy Converter Using Hybrid Jellyfish Search and Particle Swarm Optimization - Fractal and Fractional - Impact Factor of 5.4
6- Dynamic performance enhancement of nonlinear AWS wave energy systems based on optimal super-twisting control strategy - Ain Shams Engineering Journal - Impact Factor of 6.0.
In every one of my Tutorialspoincourses, you'll see that I am always available and always offer you support through each course. I will join your success and help you through any obstacles.
You'll notice that my courses get many 5-star ratings & reviews and my student satisfaction ratings also reflect this.
In the many positive course reviews, my courses get, most people like the Way I explain everything and the encouraging teaching style that I convey as well as how I get right to the point and walk you, step-by-step through Complex Ideas.
(You'll find my courses below this bio - and all of my courses have at least 10 minutes of free previews available to you, so you can quickly determine the courses that are right for you)
My courses can be watched 24/7 wherever you are.
You can also view them on mobile devices with the Tutorialspoinmobile app.
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