Energy Storage & Grid Interconnected Renewable Energy Systems syllabus
PEC-361C-ELE · Third Year Electrical Engineering, SPPU 2024 pattern. Every unit, the marks scheme, course outcomes and books, copied from the official syllabus PDF.
Unit-wise syllabus
Introduction to Energy Storage Systems
8 hoursDerived reading outline. Source text split at semicolons, line breaks and sentence boundaries, not an official topic hierarchy.
- Need for energy storage systems, Applications of energy storage in renewable energy systems, Types of energy storage systems: Battery storage, Supercapacitor, Flywheel storage, Hydrogen storage Comparison of energy storage systems, Advantages and limitations of energy storage systems, Introduction to Battery Energy Storage System (BESS) Exemplars/Case Studies: Solar power plants, wind farms, backup systems, electric vehicles Reference Books
Preserved official unit paragraph
Need for energy storage systems, Applications of energy storage in renewable energy systems, Types of energy storage systems: Battery storage, Supercapacitor, Flywheel storage, Hydrogen storage Comparison of energy storage systems, Advantages and limitations of energy storage systems, Introduction to Battery Energy Storage System (BESS) Exemplars/Case Studies: Solar power plants, wind farms, backup systems, electric vehicles Reference Books
Battery Technologies and Battery Management System
8 hoursDerived reading outline. Source text split at semicolons, line breaks and sentence boundaries, not an official topic hierarchy.
- Introduction to batteries, Types of batteries: Lead-acid battery, Lithium-ion battery, Sodium-ion battery Battery charging and discharging characteristics, State of Charge (SOC) and Depth of Discharge (DOD) Battery Management System (BMS): Monitoring, Protection, Cell balancing Thermal management of batteries, Applications of battery energy storage systems Exemplars/Case Studies: Electric vehicles, UPS systems, renewable energy storage systems Reference Books
Preserved official unit paragraph
Introduction to batteries, Types of batteries: Lead-acid battery, Lithium-ion battery, Sodium-ion battery Battery charging and discharging characteristics, State of Charge (SOC) and Depth of Discharge (DOD) Battery Management System (BMS): Monitoring, Protection, Cell balancing Thermal management of batteries, Applications of battery energy storage systems Exemplars/Case Studies: Electric vehicles, UPS systems, renewable energy storage systems Reference Books
Grid Connected Renewable Energy Systems
8 hoursDerived reading outline. Source text split at semicolons, line breaks and sentence boundaries, not an official topic hierarchy.
- Basic concept of grid-connected renewable energy systems, Grid synchronization basics Grid-connected solar PV system: Basic block diagram, Working principle Grid-connected wind energy system: Basic block diagram, Working principle, Hybrid renewable energy systems, Net metering concept, Advantages of grid-connected renewable systems Exemplars/Case Studies: Rooftop solar systems, solar farms, wind power plants, smart grids Reference Books
Preserved official unit paragraph
Basic concept of grid-connected renewable energy systems, Grid synchronization basics Grid-connected solar PV system: Basic block diagram, Working principle Grid-connected wind energy system: Basic block diagram, Working principle, Hybrid renewable energy systems, Net metering concept, Advantages of grid-connected renewable systems Exemplars/Case Studies: Rooftop solar systems, solar farms, wind power plants, smart grids Reference Books
Power Electronics and Protection in Renewable Energy Systems
8 hoursDerived reading outline. Source text split at semicolons, line breaks and sentence boundaries, not an official topic hierarchy.
- Role of power electronics in renewable energy systems, Introduction to: DC-DC converters, Inverters PWM control technique, Power quality issues: Harmonics, Voltage fluctuations Reactive power compensation, Islanding and anti-islanding protection, Grounding and safety practices Exemplars/Case Studies: Grid-connected renewable plants, battery storage systems Reference Books
Preserved official unit paragraph
Role of power electronics in renewable energy systems, Introduction to: DC-DC converters, Inverters PWM control technique, Power quality issues: Harmonics, Voltage fluctuations Reactive power compensation, Islanding and anti-islanding protection, Grounding and safety practices Exemplars/Case Studies: Grid-connected renewable plants, battery storage systems Reference Books
Smart Grid and Modern Energy Applications
8 hoursDerived reading outline. Source text split at semicolons, line breaks and sentence boundaries, not an official topic hierarchy.
- Introduction to smart grid, Smart meters and monitoring systems, Basic concept of microgrid, Modes of operation of microgrid, Electric vehicle charging systems, Vehicle-to-Grid (V2G) concept, Energy management system, Recent trends: AI in energy systems, Smart energy monitoring, Hydrogen energy applications Exemplars/Case Studies: Smart cities, EV charging stations, industrial microgrids Reference Books
Preserved official unit paragraph
Introduction to smart grid, Smart meters and monitoring systems, Basic concept of microgrid, Modes of operation of microgrid, Electric vehicle charging systems, Vehicle-to-Grid (V2G) concept, Energy management system, Recent trends: AI in energy systems, Smart energy monitoring, Hydrogen energy applications Exemplars/Case Studies: Smart cities, EV charging stations, industrial microgrids Reference Books
Marks and credits
| Head | Marks | Credit |
|---|---|---|
| CCE (continuous comprehensive evaluation) | 30 | 3 |
| End-semester exam | 70 |
Prerequisite: Basic knowledge of electrical quantities like voltage, current, power, energy etc..
Course outcomes
- CO1Explain the basics of energy storage systems and grid integration.
- CO2Understand operation of battery energy storage systems.
- CO3Analyze grid-connected renewable energy systems.
- CO4Understand power quality and protection issues in renewable energy systems.
- CO5Apply concepts of smart grid and microgrid systems
Books
Text books
- [T1]. Renewable and Efficient Electric Power Systems, Gilbert M. Masters, Wiley-IEEE Press.
- Power Electronics for Renewable Energy Systems, Bimal K. Bose, Wiley Publication.
- Solar Photovoltaics: Fundamentals, Technologies and Applications, Chetan Singh Solanki, PHI Learning Ltd.
- Energy Storage Systems, S. K. Khaitan and James D. McCalley, Wiley Publication.
- Smart Grid Technology and Applications, Lars T. Berger and Krzysztof Iniewski, Wiley Publication.
Reference books
- [R1]. Renewable Energy Sources and Emerging Technologies, D. P. Kothari, K. C. Singal and Rakesh Ranjan, PHI Learning.
- Battery Management Systems, Gregory L. Plett, Artech House.
- Grid Integration of Wind Energy, Siegfried Heier, Wiley Publication.
- Smart Grid, Janaka Ekanayake, Nick Jenkins, Kithsiri Liyanage, Jianzhong Wu and Akihiko Yokoyama, Wiley Publication.
- Electrical Energy Storage, Benoit Robyns, Bruno François and Philippe Degobert, Wiley Publication.
- Introduction to Modern Power Electronics, Andrzej M. Trzynadlowski, Wiley India.
- Understanding Smart Grids, Yang Xiao, CRC Press.
- Fundamentals of Electric Drives, G. K. Dubey, Narosa Publishing House.
FAQ
How many units are in Energy Storage & Grid Interconnected Renewable Energy Systems?
Energy Storage & Grid Interconnected Renewable Energy Systems (PEC-361C-ELE) has 5 units: Unit I Introduction to Energy Storage Systems (8 h); Unit II Battery Technologies and Battery Management System (8 h); Unit III Grid Connected Renewable Energy Systems (8 h); Unit IV Power Electronics and Protection in Renewable Energy Systems (8 h); Unit V Smart Grid and Modern Energy Applications (8 h).
What is the marks scheme for Energy Storage & Grid Interconnected Renewable Energy Systems?
The official Electrical Engineering 2024 pattern syllabus lists continuous comprehensive evaluation (CCE) for 30 marks and the end-semester exam for 70 marks, for 3 credits.
What should I know before Energy Storage & Grid Interconnected Renewable Energy Systems?
Prerequisite listed in the syllabus: Basic knowledge of electrical quantities like voltage, current, power, energy etc..