К содержимому
learnspaceYOUR NEXT CHAPTER
ПРОСТРАНСТВО ОБУЧЕНИЯ
ГлавнаяКаталог курсовМоё обучениеCoursera

Знания без границ

Учитесь у лучших университетов и компаний мира.

Открыть Coursera
Интеграция
Пространство университета
Моё пространствоСтраница курса
↵
ЯЛичный кабинетСтудент
© 2026 LearnSpaceКаждый день — возможность узнать больше.Помощь
Power System Stability · LearnSpace
Назад в каталог
courseraИнженерия

Power System Stability

Курс от L&T EduTech
Средний≈ 10.9 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

This course is designed to provide a comprehensive analysis of rotor angle and voltage stability and methods of stability enhancement. Objectives By the end of this course, you will be able to: • Declare the importance of power system stability and classify various types of stability based on the nature of disturbance and parameter to be accessed. (BL3) • State the basic assumptions in stability studies and deduce the generator modelling for stability analysis. (BL3) • Derive the swing equation and power angle equation and illustrate their significance in transient stability assessment and demonstrate using ETAP simulation. (BL3) • Develop a comprehensive understanding of Equal Area Criterion principle for transient stability analysis of a SMIB system with applications for determination of critical clearing angle and critical clearing time by solving simple numerical problems. (BL4) • Elucidate the concept of voltage stability and the determination of voltage stability index based on PV/QV characteristics. (BL3) • Illustrate the short-term and long-term voltage stability analysis with real time case studies and analyze the effects of voltage collapse and instability. (BL3) • Discover the principle and characteristics of FACTS controllers suitable for transient stability enhancement and power system stabilizer for small signal stability enhancement. (BL4) This course provides a specialized focus on modeling of power system components for stability studies and differential algebraic equations governing the dynamic behavior of the machines. The course details the analysis of rotor angle stability and voltage stability through traditional techniques supported with real time case studies. The course touches upon the principle of Equal Area Criterion, which is a simple approach for transient stability assessment of a SMIB system and hence determines the critical clearing angle and critical clearing time. The course also explores in detail the various methods of stability enhancement such as FACTS controller and Power System Stabilizer. The course stands out for its hands-on ETAP demonstrations, which is an industrial software used in power grid sectors, providing learners with practical skills in the field of power system stability analysis. To be successful in this course, you should have a background in basic electrical engineering principles, including knowledge of circuit analysis, electromagnetism, transmission and distribution of electrical power, per unit computation, load flow analysis and modeling of power system components. Familiarity of any simulation packages such as MATLAB, POWER WORLD will be highly beneficial to understand and practice hands-on exercises. By enrolling in this course, participants will not only gain theoretical knowledge but also practical skills that are directly applicable in the field of power system analysis and design. Whether you're a student aspiring to enter the industry or a professional seeking to deepen your expertise, this course offers a unique blend of theoretical insights and hands-on applications, equipping you with the tools to excel in this dynamic field.

Навыки, которые вы освоите

Electric Power SystemsSimulation and Simulation SoftwareEngineering CalculationsMathematical ModelingElectrical SystemsDifferential EquationsEngineering AnalysisElectrical EngineeringSimulationsApplied MathematicsPower ElectronicsSystems AnalysisThree-PhaseElectrical PowerControl Systems

Программа курса

4 модулей · 60 учебных материалов

01Power System Stability: Rotor Angle Stability Part-I20 материалов

Welcome to the Course

About the SpecializationВидеоAbout the CourseВидеоCourse ReadingЧтениеCourse GlossaryЧтение

Power System Stability: Rotor Angle Stability Part-I

Учитесь у экспертов

Subject Matter Expert

L&T Edutech

Power System Stability
В каталоге вашей программы

Инвестируйте в себя

Новые знания — в удобное для вас время.

Начать на Coursera

Обучение откроется на Coursera
в новой вкладке

Обучение на Coursera

≈ 10.9 ч

4 модулей

Язык: Английский

Субтитры: Узбекский, Казахский

Часть программы вашего университета
Power System Stability - Design and Operating CriteriaВидео
Assumptions and Impact of Disturbances in Stability StudiesВидео
Classification of Power System StabilityВидео
Overview of Angular Stability, Frequency Stability, and Voltage StabilityВидео
Conditions for Steady State and Transient StabilityВидео
Time Scale for Power System Dynamic CharacteristicsВидео
Rotor Dynamics of Synchronous MachinesВидео
Swing Equation and Swing Curve of a SMIB SystemВидео
Power Angle Equation of Generator and MotorВидео
Power Angle Curve and its SignificanceВидео
Steady State Stability Analysis of SMIB SystemВидео
Transient Stability Assessment of SMIB SystemВидео
Demonstration of Transient Stability Analysis using ETAP Simulation (Part-I)Видео
Demonstration of Transient Stability Analysis using ETAP Simulation (Part-II)Видео
Power System Stability: Rotor Angle Stability – PART-IОбсуждение

Assessment on Power System Stability: Rotor Angle Stability Part-I

Assessment on Power System Stability: Rotor Angle Stability Part-IЗадание
02Power System Stability: Rotor Angle Stability Part-II12 материалов

Power System Stability: Rotor Angle Stability Part-II

Equal Area Criterion Method for Transient Stability AnalysisВидеоEAC Application: Sudden Change in Mechanical InputВидеоDetermination of Critical Clearing Angle and Time using EAC for Transient Stability Analysis of a SMIB SystemВидеоNumerical Problem for Illustration of Equal Area CriterionВидеоSudden Short Circuit occurring at Sending End - Application of Equal Area CriterionВидеоSudden Short Circuit Occurring at the Middle of the Line - Application of EACВидеоSudden Short Circuit Occurring at the Middle of the Line - Application of EACВидеоNumerical Problems - I on Transient Stability AnalysisВидеоNumerical Problems - II on Transient Stability AnalysisВидеоSimulation Studies on Transient Stability AnalysisВидеоPower System Stability: Rotor Angle Stability - PART-II Обсуждение

Assessment on Power System Stability: Rotor Angle Stability Part-II

Assessment on Power System Stability: Rotor Angle Stability Part-IIЗадание
03Voltage Stability Analysis15 материалов

Voltage Stability Analysis

Basic Concepts Related to Voltage StabilityВидеоPV & QV Characteristics in Voltage Stability AnalysisВидеоTypes of Voltage Stability Part-IВидеоTypes of Voltage Stability Part-IIВидеоIll Effects of Voltage InstabilityВидеоVoltage Collapse - A Case StudyВидеоVoltage Collapse - A Case Study Part 2ВидеоShort Term Voltage Stability AnalysisВидеоLong Term Voltage Stability AnalysisВидеоTime Frame-based Voltage Stability AnalysisВидеоEffect of Load on Voltage StabilityВидеоAnalysis of Voltage Stability for Simple SystemsВидеоNumerical Problem and SimulationВидеоVoltage Stability Analysis Обсуждение

Assessment on Voltage Stability Analysis

Assessment on Voltage Stability AnalysisЗадание
04Method of Stability Enhancement13 материалов

Method of Stability Enhancement

Reactive Power Compensation Using FACTS DevicesВидеоTypes of FACTS Controllers-IВидеоTypes of FACTS Controllers-IIВидеоPrinciples of Conventional Reactive Power CompensatorsВидеоStatic VAR Compensator - Structure and ApplicationsВидеоStatic and Dynamic VI Characteristics of SVCВидеоA Case Study on Prevention of Voltage InstabilityВидеоPrinciple and Modes of Operation of TCSCВидеоCharacteristics and Applications of TCSCВидеоComparative Study of Various FACTS ControllersВидеоPSS for Small Signal Stability EnhancementВидеоMethods of Stability Enhancement Обсуждение

Assessment on Method of Stability Enhancement

Assessment on Method of Stability EnhancementЗадание