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Course Detail

Course Name Power System Stability
Course Code 23AID463
Program B.Tech in Artificial Intelligence and Data Science
Credits 3
Campus Coimbatore , Amritapuri ,Faridabad , Bangaluru, Amaravati

Syllabus

Unit 1

Introduction to Power System Stability:Definition, types, and causes of power system instability – Overview of power system modelling – Synchronous generator models – Excitation system models – Governor models – Load models.

Unit 2

Power System Stability Analysis:Small-signal stability analysis – Transient stability analysis – Critical clearing time – Voltage stability – Basics of power system control

Unit 3

Improving Power System Stability:Power System Stabilizers – FACTS and HVDC systems for power system stability – Microgrids for power system stability – Data-driven Techniques for power system stability

Objectives and Outcomes

Course Objectives

  • The course shall teach the students to analyse power system stability using both traditional and data-driven techniques.
  • The course aims to enable students to understand and develop control strategies that can improve power system stability.
  • By the end of the course, students should be able to simulate and analyse power system stability using synchronous machine models.
  • The course intends to equip students with the critical thinking and problem-solving skills needed to tackle power system stability challenges.

Course Outcomes

After completing this course, students will be able to

CO1

Comprehend the fundamentals of power system stability

CO2

Apply mathematical modelling techniques to simulate power system stability

CO3

Familiarize and compare different techniques for improving power system stability

CO4

Apply data-driven techniques for power system stability analysis and improvement

CO-PO Mapping

PO/PSO

PO1

PO2

PO3

PO4

PO5

PO6

PO7

PO8

PO9

PO10

PO11

PO12

PSO1

PSO2

PSO3

CO

CO1

2

2

1

1

1

2

2

1

CO2

2

3

2

2

2

1

2

1

2

3

2

CO3

2

3

2

2

2

1

1

1

2

2

2

CO4

2

3

3

2

2

1

2

1

2

3

3

Evaluation Pattern

Evaluation Pattern

Assessment

Internal/External

Weightage (%)

Assignments (minimum 2)

Internal

30

Quizzes (minimum 2)

Internal

20

Mid-Term Examination

Internal

20

Term Project/ End Semester Examination

External

30

Text Books / References

Text Books / References

 Prabha Kundur ,Power System Stability and Control,1998

John Grainger and William D. Stevenson Jr. ,Power System Analysis1994

Harry G. Kwatny , Karen Miu-Miller ,Power System Dynamics and Control,2016

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