L&T EduTech

Cloud Computing and Comm. Protocols for Next-Gen Smart Grids

L&T EduTech

Cloud Computing and Comm. Protocols for Next-Gen Smart Grids

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

Recommended experience

1 week to complete
at 10 hours a week
Flexible schedule
Learn at your own pace
Gain insight into a topic and learn the fundamentals.
Intermediate level

Recommended experience

1 week to complete
at 10 hours a week
Flexible schedule
Learn at your own pace

What you'll learn

  • Learn smart grid communication technologies, protocols, cloud computing, and networking for reliable power system monitoring and control

  • Understand cybersecurity, cloud services, IoT connectivity, and communication standards for secure and intelligent smart grids.

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Recently updated!

August 2026

Assessments

4 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 4 modules in this course

Let’s begin this module by understanding the communication technologies and infrastructure used in modern smart grid systems. The module discusses the communication requirements of smart grids, mapping smart grid applications to suitable communication technologies, and information exchange mechanisms between different smart grid domains. It also introduces communication pathway scenarios, smart grid communication standards, layered architecture of smart grid infrastructure, Open System Interconnection (OSI) model, TCP/IP model, and various smart grid communication networks used for reliable and secure data transmission in intelligent power systems.

What's included

18 videos2 readings1 assignment1 discussion prompt

Let’s begin this module by understanding various wired and wireless communication technologies used in smart grid systems for reliable data transmission, monitoring, and control. The module discusses Ethernet communication, Power Line Communication (PLC), Fiber Optic Communication (FOC), Home Plug communication, and several wireless communication technologies such as WiMAX, Zigbee, Z-Wave, Wi-Fi, 3G/4G/5G cellular networks, Narrowband-IoT (NB-IoT), Satellite Communication, and Free Space Optical (FSO) communication. It also explains their working principles, characteristics, advantages, limitations, and applications in smart grid infrastructure.

What's included

17 videos1 assignment1 discussion prompt2 plugins

Let’s begin this module by understanding the importance of privacy, cybersecurity, and resilience in smart grid communication systems. The module discusses various security challenges faced by smart grid communication networks, threat and risk assessment methodologies, and resilience mechanisms against physical attacks. It also introduces the key security functional blocks of smart grid reference architecture, endpoint security controls, and security schemes used in both public and private smart grid communication networks, including Advanced Metering Infrastructure (AMI) security.

What's included

10 videos1 assignment1 discussion prompt

Let’s begin this module by understanding the role of cloud computing technologies and services in modern smart grid systems. The module covers the fundamentals of cloud computing, including cloud service models, deployment models, and cloud architecture designed for smart grid applications. It also discusses cloud-based solutions for demand response, load balancing, dynamic pricing policies, energy meter management, and virtual power plant operations through various practical case studies.

What's included

8 videos1 assignment1 discussion prompt2 plugins

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L&T EduTech
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