The Complete Course - Induction Motor Acceleration Analysis in ETAP Software
Dynamic & Static Motor Starting Analysis, Methods of Motor Starting (Autotransformer, Star-Delta) in ETAP Software
Electrical Engineering,Power Engineering,Electricity,Teaching & Academics
Course Description
"Want To Become Expert In ETAP Software and Motor Starting Analysis?" This course will help you to achieve your goals to become ETAP and Power System Expert.
Welcome to the course "The Complete Course - Induction Motor Acceleration Analysis"
ETAP is an analytical engineering software which is helpful for an electrical engineer to simulate and analyze the steady state and dynamic power system. It is used by various sectors such as Generation, Transmission, Distribution, Industrial, Transportation and Low voltage.
The purpose of this course is to learn power system modeling & analysis using ETAP software which will cover a range of ETAP functionalities used to design & solve various power system practical problems.
The course will begin with the software overview, basics of one-line diagram creation, data entry, and quickly expands the users’ knowledge to include methods to automatically perform multiple ‘what if’ studies using multiple scenarios. Wherever possible, the topics are explained with hand calculations and results are compared with ETAP software so that it becomes more easier to the attendees to understand the concepts.
Below major topics are covered in this course:
Introduction To Induction Motor Dynamics and Transients
Input Data Required For Dynamic and Static Motor Starting Analysis
Impedance Method or Voltage Divider Method To Derive Motor Terminal Voltage During Start
Dynamic and Static Motor Starting Analysis Theory and Examples
Autotransformer Motor Starting Analysis Theory and Examples
Star-Delta Motor Starting Analysis Theory and Examples
Motor Reacceleration or Fault Transient Analysis Theory and Examples
Benefits of attending this course:
Course is published using ETAP 20.5
Downloadable course material and Hand Calculations
Goals
What will you learn in this course:
- Fundamentals of Induction Motor Dynamics
- Fundamentals of Induction Motor Acceleration Analysis
- Input Data for Induction Motor Acceleration Analysis Required by Simulation Software
- Difference Between Control and Uncontrolled Voltage Source
- Manual Calculation on Impedance Method or Voltage Divider Method for Calculating Motor Terminal Voltage
- Induction Motor Acceleration Analysis Examples
- Dynamic and Static Motor Starting Analysis
- Autotransformer Motor Starting Analysis
- Star-Delta Motor Starting Analysis
- Motor Reacceleration Analysis Or Faulter Motor Transient Analysis
Prerequisites
What are the prerequisites for this course?
- Fundamentals of Electrical Engineering
- Passion To Learn Power System Analysis
- No Any Special Skills and Knowledge Requirement

Curriculum
Check out the detailed breakdown of what’s inside the course
Introduction of Induction Motor Dynamics and Transients
1 Lectures
-
Introduction of Induction Motor Dynamics and Transients 18:09 18:09
Input Data Required For Dynamic Motor Starting Analysis
1 Lectures

Difference Between Controlled and Uncontrolled Source
1 Lectures

Impedance Method or Voltage Divider Method To Calculate Motor Terminal Voltage
1 Lectures

Dynamic Motor Starting Analysis Theory and Examples
4 Lectures

Static Motor Starting Analysis
1 Lectures

Auto-Transformer Motor Starting Analysis (Theory and Example)
2 Lectures

Star-Delta Motor Starting Analysis (Theory and Example)
2 Lectures

Difference Between Motor Starting Module and Transient Stability Module in ETAP
1 Lectures

Induction Motor Reacceleration Study or Faulted Transient Study
5 Lectures

Instructor Details

Elektrik Power Academy
Engineering ExcellenceI am an Electrical Engineer and a Free Lancer having rich experience in power system analysis, substation & switchyard design and engineering and in power system protection.
As an experience professional, I have worked on various power system analysis projects, substation/switchyard detailed design & engineering upto 400kV. I am also very passionate about power system analysis & power system protection subjects.
I have published various papers in IEEE/CIGRE forums.
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