Indian Institute of Technology Bombay
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All courses for Indian Institute of Technology Bombay
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EE 685 – Power System Protection EE685 39
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Introduction to Chemical Engineering CL152 3
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Manufacturing 5
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Mechanics 1
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Physics 1
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Python Programming 1
Latest notes & summaries Indian Institute of Technology Bombay
Module 1: Introduction 
Lecture 1: Modern Power Systems 
 
Objectives: 
In this lecture, you will learn the following 
Evolution of power systems: significant milestones. 
Structure of a bulk power system network. 
What is a synchronous grid? Why is grid frequency standardized?
- Package deal
- Class notes
- • 3 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 1 out of 3 pages
Module 1: Introduction 
Lecture 1: Modern Power Systems 
 
Objectives: 
In this lecture, you will learn the following 
Evolution of power systems: significant milestones. 
Structure of a bulk power system network. 
What is a synchronous grid? Why is grid frequency standardized?
Module 1: Introduction 
Lecture 2: Why make interconnections? 
 
Objectives: 
In this lecture, you will learn the following 
Why are power systems interconnected? 
What is the concept of reliability? Why is it more economical to interconnect a power system? Identifying the significant elements of a practical interconnected power system.
- Package deal
- Class notes
- • 3 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 1 out of 3 pages
Module 1: Introduction 
Lecture 2: Why make interconnections? 
 
Objectives: 
In this lecture, you will learn the following 
Why are power systems interconnected? 
What is the concept of reliability? Why is it more economical to interconnect a power system? Identifying the significant elements of a practical interconnected power system.
Module 1: Introduction 
 Lecture 3: Operating States 
 
Objectives: 
In this lecture, you will learn the following 
Operational Objectives of a Power System. 
Hierarchical Control in Power Systems. 
Issues of ownership and coordination. 
Definition of various operating states, nature of various control actions, and their significance. An overview of what you will learn in this course.
- Package deal
- Class notes
- • 5 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 2 out of 5 pages
Module 1: Introduction 
 Lecture 3: Operating States 
 
Objectives: 
In this lecture, you will learn the following 
Operational Objectives of a Power System. 
Hierarchical Control in Power Systems. 
Issues of ownership and coordination. 
Definition of various operating states, nature of various control actions, and their significance. An overview of what you will learn in this course.
Module 2: Equipment and Stability Constraints in System Operation Lecture 4: Introduction 
 
Objectives: 
In this lecture, you will learn the following 
What is the nature of constraints faced in power system operation? What are the various types of equipment constraints?
- Package deal
- Class notes
- • 2 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 1 out of 2 pages
Module 2: Equipment and Stability Constraints in System Operation Lecture 4: Introduction 
 
Objectives: 
In this lecture, you will learn the following 
What is the nature of constraints faced in power system operation? What are the various types of equipment constraints?
Module 2: Equipment and Stability Constraints in System Operation Lecture 5: Generator Constraints 
 
Objectives: 
In this lecture, you will learn the following 
Nature of generator constraints. 
Generator Capability curves. 
The typical rating of a large synchronous generator.
- Package deal
- Class notes
- • 2 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 1 out of 2 pages
Module 2: Equipment and Stability Constraints in System Operation Lecture 5: Generator Constraints 
 
Objectives: 
In this lecture, you will learn the following 
Nature of generator constraints. 
Generator Capability curves. 
The typical rating of a large synchronous generator.
Module 4: Voltage and Power Flow Control 
Lecture 19: Power Flow Control 
 
Objectives: 
In this lecture, you will learn the following 
The power transfer capability of a network may be limited due inability to control power flow in transmission paths. 
What are the ways by which one may control real power flows?
- Package deal
- Class notes
- • 6 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 2 out of 6 pages
Module 4: Voltage and Power Flow Control 
Lecture 19: Power Flow Control 
 
Objectives: 
In this lecture, you will learn the following 
The power transfer capability of a network may be limited due inability to control power flow in transmission paths. 
What are the ways by which one may control real power flows?
Module 2: Equipment and Stability Constraints in System Operation Lecture 6: Transmission Line constraints 
 
Objectives: 
In this lecture, you will learn the following 
Thermal and dielectric limitations of a transmission line. 
Effect of loading on voltages, for long-distance ac transmission. 
AC line loadability (power transmission capability) versus distance.
- Package deal
- Class notes
- • 3 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 1 out of 3 pages
Module 2: Equipment and Stability Constraints in System Operation Lecture 6: Transmission Line constraints 
 
Objectives: 
In this lecture, you will learn the following 
Thermal and dielectric limitations of a transmission line. 
Effect of loading on voltages, for long-distance ac transmission. 
AC line loadability (power transmission capability) versus distance.
Module 2: Equipment and Stability Constraints in System Operation Lecture 7: Insert: Numerical Solution of Differential Equations Objectives 
 
What does one mean by stability? 
What is angular stability? 
Dynamical equations for a single machine -infinite bus system. Equilibrium points.
- Package deal
- Class notes
- • 3 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 1 out of 3 pages
Module 2: Equipment and Stability Constraints in System Operation Lecture 7: Insert: Numerical Solution of Differential Equations Objectives 
 
What does one mean by stability? 
What is angular stability? 
Dynamical equations for a single machine -infinite bus system. Equilibrium points.
Module 2: Equipment and Stability Constraints in System Operation Lecture 7a: Numerical Solution of Differential Equations 
 
Objectives: 
In this lecture, you will learn the following 
How does one simulate the behavior of a dynamical system numerically? 
Runge-Kutta Fourth-order method
- Package deal
- Class notes
- • 4 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 1 out of 4 pages
Module 2: Equipment and Stability Constraints in System Operation Lecture 7a: Numerical Solution of Differential Equations 
 
Objectives: 
In this lecture, you will learn the following 
How does one simulate the behavior of a dynamical system numerically? 
Runge-Kutta Fourth-order method
Module 4: Voltage and Power Flow Control 
Lecture 20: Some Real-Life Examples 
 
Objectives: 
In this lecture, you will learn the following 
Real-life examples of a few power flow and voltage control devices.
- Package deal
- Class notes
- • 5 pages's •
-
Indian Institute Of Technology Bombay•EE 685 – Power System Protection
-
Power System Protection, IIT Bombay• By aakashnln
Preview 2 out of 5 pages
Module 4: Voltage and Power Flow Control 
Lecture 20: Some Real-Life Examples 
 
Objectives: 
In this lecture, you will learn the following 
Real-life examples of a few power flow and voltage control devices.