L&T EduTech

Load Flow Analysis

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Gain insight into a topic and learn the fundamentals.
Intermediate level

Recommended experience

8 hours to complete
3 weeks at 2 hours a week
Flexible schedule
Learn at your own pace
Gain insight into a topic and learn the fundamentals.
Intermediate level

Recommended experience

8 hours to complete
3 weeks at 2 hours a week
Flexible schedule
Learn at your own pace

What you'll learn

  • Get insights on formation of bus impedance and bus admittance matrices through various methods and suitable examples

  • Obtain the load flow solution of a power system network with conventional techniques supported with simple numerical examples and ETAP simulations

  • Formulate DC and AC-DC load flow problem and their solution approaches with numerical examples

Details to know

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Assessments

3 assignments

Taught in English

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This course is part of the Industrial Power Systems Analysis and Stability Specialization
When you enroll in this course, you'll also be enrolled in this Specialization.
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There are 3 modules in this course

Let’s begin this course by understanding the network topology of a power system network and formation of network matrices namely bus admittance and bus impedance matrices, which finds application for various power system studies.

What's included

14 videos2 readings1 assignment1 discussion prompt

This module imparts knowledge on development of power flow equations in rectangular form and polar form and obtaining load flow solution for a given power system network using Gauss-Seidel and Newton Raphson iterative techniques.

What's included

13 videos1 assignment1 discussion prompt

This module aims to explore the Fast Decoupled Load Flow method, DC Load Flow Method and AC-DC Load Flow method through a structured algorithm/flowchart and suitable illustrations of interest.

What's included

11 videos1 reading1 assignment1 discussion prompt

Instructor

Subject Matter Expert
L&T EduTech
90 Courses64,600 learners

Offered by

L&T EduTech

Recommended if you're interested in Electrical Engineering

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