L&T EduTech

Integration of Distributed Energy Resources in MicroGrid

L&T EduTech

Integration of Distributed Energy Resources in MicroGrid

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

Recommended experience

5 hours to complete
Flexible schedule
Learn at your own pace
Gain insight into a topic and learn the fundamentals.
Intermediate level

Recommended experience

5 hours to complete
Flexible schedule
Learn at your own pace

What you'll learn

  • Learn DER integration, Solar PV, wind energy, VPPs, EVs, and renewable forecasting for modern smart grids.

  • Understand microgrid design, IEEE 2030.7 standards, MATLAB, HOMER Pro, and real-world microgrid applications.

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Recently updated!

August 2026

Assessments

2 assignments

Taught in English

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This course is part of the Smart Grid Technologies with Cloud Computing Solutions Specialization
When you enroll in this course, you'll also be enrolled in this Specialization.
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There are 2 modules in this course

Let’s begin this module by understanding the fundamentals of Distributed Energy Resources (DERs) and their growing importance in modern power systems. The module introduces the classification, benefits, and applications of DERs, along with the fundamentals of Solar Photovoltaic (PV) systems and their major components. It explores renewable energy forecasting through a practical demonstration of solar PV forecasting using a Linear Regression algorithm in Python. The module also discusses the methods and activities involved in wind power integration, the concept and operation of Virtual Power Plants (VPPs), and the role of Electric Vehicles (EVs) as active participants in smart grid environments.

What's included

9 videos2 readings1 assignment1 discussion prompt

Let’s continue this course by exploring the integration of Distributed Energy Resources (DERs) into smart grids and microgrid systems. This module discusses the concepts and methods of DER integration, highlighting their role in improving grid reliability, resilience, and sustainability. The module introduces microgrids, their major components, operational functions as defined by IEEE 2030.7 standards, and various microgrid topologies. It also provides practical exposure to microgrid modeling and simulation using MATLAB and microgrid design using HOMER Pro software. Finally, the module presents a real-world case study on India’s first solar village, demonstrating the application of microgrid technologies for sustainable energy access and rural electrification.

What's included

8 videos1 assignment1 discussion prompt2 plugins

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L&T EduTech
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