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Course Detail

Course Name Embedded Systems in Smart Grid
Course Code 25ES649
Program M. Tech. in Embedded Systems
Credits 3
Campus Bengaluru, Coimbatore

Syllabus

Syllabus

Smart grid definition. Smart grid vs conventional grid. Smart Grid technologies- Power system and ICT in Generation, Transmission and Distribution. Basic understanding of power systems. Management aspects (Utility, Operator, Consumer). Evolution of automation in power system. Smart Grid features- Distributed generation, storage, DD, DR, AMI, WAMS, WACS). Sensors – CT, PT; Embedded Devices – IED, PMU, PDC, CT, PT, relays, DR Switch; Algorithms; Communication- Standards, Technology, and protocols. Cyber Security, IoT applications in power system Case study 1 generation control, load management, dynamic pricing etc.; IoT for domestic prosumers. Case Study 2 -Smart microgrid simulator (SMGS), DR, DD, Energy storage, Communication, Case Study 3: AI-driven demand forecasting & anomaly detection.

Text Books / References
  1. James Momoh, “Smart Grid: Fundamentals of Design and Analysis”, IEEE Press, March 2012. 
  2. Janaka Ekanayake, Nick Jenkins, Kithsiri Liyanage, Jianzhong Wu and Akihiko Yokoyama, Smart Grid: Technology and Applications”, Wiley, February 2012. 
  3. Nouredine Hadjsaïd and Jean Claude Sabonnadière, “Smart Grids”, Wiley ISTE, May 2012. 
  4. Ali Keyhani and Muhammad Marwali, “Smart Power Grids”, Springer, 2011. 
  5. Vijay Madisetti and Arshdeep Bahga, “Internet of Things: A Hands-on Approach”, Hardcover –Import, 2014. 

Objectives and Outcomes

Pre-requisite: Nil

Course Objectives:

  • To introduce smart grid concepts, technologies, and differences from conventional power systems.
  • To develop understanding of smart grid components, including sensors, embedded devices, communication standards, and system automation.
  • To explore IoT applications, case studies, and advanced management strategies for smart grids and microgrids.

Course Outcomes:

CO1: Understand the fundamentals of power system management and automation.
CO2: Explore the features of Smart grid. 
CO3: Learn different Sensors and embedded devices used in smart grid. 
CO4: Examine the different communication standards, technologies and protocols for smart grid. 
CO5: Investigate the IoT applications in Smart grid. 

CO-PO Mapping:

PO/PSO PO1 PO2 PO3 PSO1 PSO2
CO
CO1  3
CO2  3
CO3 3
CO4 3
CO5 3 2 3 3 3

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