Power System Voltage Stability

Power System Voltage Stability
Title Power System Voltage Stability PDF eBook
Author Carson W. Taylor
Publisher McGraw-Hill Companies
Pages 296
Release 1994
Genre Technology & Engineering
ISBN

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Provides solutions to everyday voltage stability problems increasingly faced by engineers in electric power plants. Table of Contents: General Aspects of Electric Power Systems; What is Voltage Stability; Transmission System Reactive Power Compensation and Control; Power System Loads; Generation Characteristics; Simulation of Equivalent Systems; Voltage Stability of a Large System; Voltage Stability with HVDC Links; Power System Planning and Operating Guidelines. Appendices: A. Notes on the Per Unit System; B. Voltage Stability and the Power Flow Problem; C. Power Flow Simulation Methodology; D. Dynamic Analysis Methods; E. Equivalent System 2 Data; F. Voltage Instability Incidents. Index. Illustrations.

Voltage Stability of Electric Power Systems

Voltage Stability of Electric Power Systems
Title Voltage Stability of Electric Power Systems PDF eBook
Author Thierry van Cutsem
Publisher Springer Science & Business Media
Pages 383
Release 2007-10-12
Genre Technology & Engineering
ISBN 0387755357

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Voltage Stability is a relatively recent and challenging problem in Power Systems Engineering. It is gaining in importance as the trend of operating power systems closer to their limits continues to increase. Voltage Stability of Electric Power Systems presents a clear description of voltage instability and collapse phenomena. It proposes a uniform and coherent theoretical framework for analysis and covers state-of-the-art methods. The book describes practical methods that can be used for voltage security assessment and offers a variety of examples.

Voltage Stability Analysis of Power System

Voltage Stability Analysis of Power System
Title Voltage Stability Analysis of Power System PDF eBook
Author Yong Tang
Publisher Springer Nature
Pages 394
Release 2021-04-07
Genre Technology & Engineering
ISBN 9811610711

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This book describes comprehensively theories and methods of the power system voltage stability. It first introduces the basic theory of the power system and the basic concept and classification of the power system stability and discusses the basic concepts of voltage stability, including the mechanism of voltage stability, and influencing factors of transient and medium-term and long-term voltage stability. This book also describes the elemental characteristics and models of important power system in voltage stability analysis and discusses the theories and methods of analysis on steady, transient and medium-term and long-term voltage stability analysis, respectively. Then, this book introduces the measures to improve the voltage stability. Finally, two examples of voltage stability analysis in engineering applications are introduced. This book is useful as a reference for engineers and technicians who are engaged in dispatching operation, planning, design and scientific research of the power system, and teachers and students of electrical engineering major in colleges and universities.

Novel Advancements in Electrical Power Planning and Performance

Novel Advancements in Electrical Power Planning and Performance
Title Novel Advancements in Electrical Power Planning and Performance PDF eBook
Author Shandilya, Smita
Publisher IGI Global
Pages 388
Release 2019-08-02
Genre Technology & Engineering
ISBN 1522585532

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As the demand for efficient energy sources continues to grow, electrical systems are becoming more essential to meet these increased needs. Electrical generation and transmission plans must remain cost-effective, reliable, and flexible for further future expansion. As these systems are being utilized more frequently, it becomes imperative to find ways of optimizing their overall function. Novel Advancements in Electrical Power Planning and Performance is an essential reference source that provides vital research on the specific challenges, issues, strategies, and solutions that are associated with electrical transmission and distribution systems and features emergent methods and research in the systemic and strategic planning of energy usage. Featuring research on topics such as probabilistic modeling, voltage stability, and radial distribution, this book is ideally designed for electrical engineers, practitioners, power plant managers, investors, industry professionals, researchers, academicians, and students seeking coverage on the methods and profitability of electrical expansion planning.

Computational Techniques for Voltage Stability Assessment and Control

Computational Techniques for Voltage Stability Assessment and Control
Title Computational Techniques for Voltage Stability Assessment and Control PDF eBook
Author Venkataramana Ajjarapu
Publisher Springer Science & Business Media
Pages 257
Release 2007-05-27
Genre Technology & Engineering
ISBN 0387329358

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This book provides comprehensive details on continuation power flow, and reviews concepts in bifurcation theory and continuation methods for assessing power system voltage stability. The author proposes a uniform framework that provides computational approaches for both short-term and long-term voltage stability phenomena. Readers can access the author’s web-based simulation tools, which are based on the advice in this book, to simulate tests of systems up to the size of 200 busses.

Voltage Stability of Electric Power Systems

Voltage Stability of Electric Power Systems
Title Voltage Stability of Electric Power Systems PDF eBook
Author Thierry van Cutsem
Publisher Springer Science & Business Media
Pages 382
Release 2007-11-27
Genre Technology & Engineering
ISBN 0387755365

Download Voltage Stability of Electric Power Systems Book in PDF, Epub and Kindle

Voltage Stability is a relatively recent and challenging problem in Power Systems Engineering. It is gaining in importance as the trend of operating power systems closer to their limits continues to increase. Voltage Stability of Electric Power Systems presents a clear description of voltage instability and collapse phenomena. It proposes a uniform and coherent theoretical framework for analysis and covers state-of-the-art methods. The book describes practical methods that can be used for voltage security assessment and offers a variety of examples.

Robust Control for Grid Voltage Stability: High Penetration of Renewable Energy

Robust Control for Grid Voltage Stability: High Penetration of Renewable Energy
Title Robust Control for Grid Voltage Stability: High Penetration of Renewable Energy PDF eBook
Author Jahangir Hossain
Publisher Springer
Pages 320
Release 2014-07-07
Genre Technology & Engineering
ISBN 9812871160

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This book makes the area of integration of renewable energy into the existing electricity grid accessible to engineers and researchers. This is a self-contained text which has models of power system devices and control theory necessary to understand and tune controllers in use currently. The new research in renewable energy integration is put into perspective by comparing the change in the system dynamics as compared to the traditional electricity grid. The emergence of the voltage stability problem is motivated by extensive examples. Various methods to mitigate this problem are discussed bringing out their merits clearly. As a solution to the voltage stability problem, the book covers the use of FACTS devices and basic control methods. An important contribution of this book is to introduce advanced control methods for voltage stability. It covers the application of output feedback methods with a special emphasis on how to bound modelling uncertainties and the use of robust control theory to design controllers for practical power systems. Special emphasis is given to designing controllers for FACTS devices to improve low-voltage ride-through capability of induction generators. As generally PV is connected in low voltage distribution area, this book also provides a systematic control design for the PV unit in distribution systems. The theory is amply illustrated with large IEEE Test systems with multiple generators and dynamic load. Controllers are designed using Matlab and tested using full system models in PSSE.