Computational Methods for Electric Power Systems

Computational Methods for Electric Power Systems
Author: Mariesa L. Crow
Publisher: CRC Press
Total Pages: 316
Release: 2009-08-17
Genre: Technology & Engineering
ISBN: 1466556064

Improve Compensation Strategies for Package ShortcomingsIn today's deregulated environment, the nation's electric power network is forced to operate in a manner for which it was not designed. As a result, precision system analysis is essential to predict and continually update network operating status, estimate current power flows and bus voltages,

Computational Methods in Power System Analysis

Computational Methods in Power System Analysis
Author: Reijer Idema
Publisher: Atlantis Press
Total Pages: 0
Release: 2014-03-17
Genre: Mathematics
ISBN: 9789462390638

This book treats state-of-the-art computational methods for power flow studies and contingency analysis. In the first part the authors present the relevant computational methods and mathematical concepts. In the second part, power flow and contingency analysis are treated. Furthermore, traditional methods to solve such problems are compared to modern solvers, developed using the knowledge of the first part of the book. Finally, these solvers are analyzed both theoretically and experimentally, clearly showing the benefits of the modern approach.

Computational Methods for Large Sparse Power Systems Analysis

Computational Methods for Large Sparse Power Systems Analysis
Author: Shreevardhan Arunchandra Soman
Publisher: Springer
Total Pages: 335
Release: 2013-10-03
Genre: Technology & Engineering
ISBN: 9781461352563

Computational methods in Power Systems require significant inputs from diverse disciplines, such as data base structures, numerical analysis etc. Strategic decisions in sparsity exploitation and algorithm design influence large-scale simulation and high-speed computations. Selection of programming paradigm shapes the design, its modularity and reusability. This has a far reaching effect on software maintenance. Computational Methods for Large Sparse Power Systems Analysis: An Object Oriented Approach provides a unified object oriented (OO) treatment for power system analysis. Sparsity exploitation techniques in OO paradigm are emphasized to facilitate large scale and fast computing. Specific applications like large-scale load flow, short circuit analysis, state estimation and optimal power flow are discussed within this framework. A chapter on modeling and computational issues in power system dynamics is also included. Motivational examples and illustrations are included throughout the book. A library of C++ classes provided along with this book has classes for transmission lines, transformers, substation etc. A CD-ROM with C++ programs is also included. It contains load flow, short circuit analysis and network topology processor applications. Power system data is provided and systems up to 150 buses can be studied. Other Special Features: This book is the first of its kind, covering power system applications designed with an OO perspective. Chapters on object orientation for modeling of power system computations, data structure, large sparse linear system solver, sparse QR decomposition in an OO framework are special features of this book.

Computational Methods for Electric Power Systems

Computational Methods for Electric Power Systems
Author: Mariesa Crow
Publisher: CRC Press
Total Pages: 346
Release: 2021-06-30
Genre:
ISBN: 9781032098227

This book introduces computational methods that form the basis of many analytical studies in power systems. It provides the background for algorithms that underlie several commercial software packages, linking concepts to power system applications. The third edition contains new material on preconditioners for linear iterative methods, Broyden's

New Computational Methods in Power System Reliability

New Computational Methods in Power System Reliability
Author: David Elmakias
Publisher: Springer Science & Business Media
Total Pages: 416
Release: 2008-07-07
Genre: Mathematics
ISBN: 3540778101

Power system reliability is the focus of intensive study due to its critical role in providing energy supply to modern society. This comprehensive book describes application of some new specific techniques: universal generating function method and its combination with Monte Carlo simulation and with random processes methods, Semi-Markov and Markov reward models and genetic algorithm. The book can be considered as complementary to power system reliability textbooks.

Computational Methods for Electric Power Systems

Computational Methods for Electric Power Systems
Author: Mariesa L. Crow
Publisher: CRC Press
Total Pages: 304
Release: 2009-08-17
Genre: Technology & Engineering
ISBN: 1420086618

Improve Compensation Strategies for Package ShortcomingsIn today's deregulated environment, the nation's electric power network is forced to operate in a manner for which it was not designed. As a result, precision system analysis is essential to predict and continually update network operating status, estimate current power flows and bus voltages,

Computational Methods in Power System Analysis

Computational Methods in Power System Analysis
Author: Reijer Idema
Publisher: Springer
Total Pages: 113
Release: 2014-07-08
Genre: Technology & Engineering
ISBN: 9462390649

This book treats state-of-the-art computational methods for power flow studies and contingency analysis. In the first part the authors present the relevant computational methods and mathematical concepts. In the second part, power flow and contingency analysis are treated. Furthermore, traditional methods to solve such problems are compared to modern solvers, developed using the knowledge of the first part of the book. Finally, these solvers are analyzed both theoretically and experimentally, clearly showing the benefits of the modern approach.

Computational Methods for Large Sparse Power Systems Analysis

Computational Methods for Large Sparse Power Systems Analysis
Author: S.A. Soman
Publisher: Springer Science & Business Media
Total Pages: 349
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 1461508231

Computational methods in Power Systems require significant inputs from diverse disciplines, such as data base structures, numerical analysis etc. Strategic decisions in sparsity exploitation and algorithm design influence large-scale simulation and high-speed computations. Selection of programming paradigm shapes the design, its modularity and reusability. This has a far reaching effect on software maintenance. Computational Methods for Large Sparse Power Systems Analysis: An Object Oriented Approach provides a unified object oriented (OO) treatment for power system analysis. Sparsity exploitation techniques in OO paradigm are emphasized to facilitate large scale and fast computing. Specific applications like large-scale load flow, short circuit analysis, state estimation and optimal power flow are discussed within this framework. A chapter on modeling and computational issues in power system dynamics is also included. Motivational examples and illustrations are included throughout the book. A library of C++ classes provided along with this book has classes for transmission lines, transformers, substation etc. A CD-ROM with C++ programs is also included. It contains load flow, short circuit analysis and network topology processor applications. Power system data is provided and systems up to 150 buses can be studied. Other Special Features: This book is the first of its kind, covering power system applications designed with an OO perspective. Chapters on object orientation for modeling of power system computations, data structure, large sparse linear system solver, sparse QR decomposition in an OO framework are special features of this book.

Computational Techniques for Voltage Stability Assessment and Control

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

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.