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Power System Load Flow Analysis (Professional Engineering S), by Lynn Powell
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This rigorous tutorial is aimed at both power system professionals and electrical engineering students. Breaking down the complexities of load flow analysis into a series of short, focused chapters, the book develops each of the major algorithms used, covers the handling of generators and transformers in the analysis process, and details how these algorithms can be deployed in powerful software. Having read the book, and EE student or engineer will have all the tools necessary to predict load usage and prevent overloads, blackouts, and brownouts.
- Sales Rank: #2718969 in Books
- Published on: 2004-12-02
- Original language: English
- Number of items: 1
- Dimensions: 9.10" h x .87" w x 6.10" l, .97 pounds
- Binding: Hardcover
- 182 pages
From the Back Cover
A MASTER CLASS IN OPTIMIZING ELECTRICITY FLOW
Prevent across-the-grid failures, as well as localized brownouts and blackouts, and accurately anticipate future usage with this rigorous tutorial on load flow analysis. Expert Lynn Powell's Power System Load Flow Analysis breaks the complex tasks involved in mathematical modeling of complicated power grids into short segments, making the computational tools of this trade easier to grasp and use. This text derives well-known major algorithms, and shows you how they are deployed in powerful software. Here's all the help you need to:
- Predict network loadings, prevent overloads, and anticipate future needs
- Model generators, transformers, and other equipment mathematically
- Solve nonlinear load flow equations
- Deploy algorithms in software
- Efficiently troubleshoot emerging problems
- Discover common causes of solution difficulties
Electrical load flow analysis is critically important in the planning and management of power networks. This expert guide gives you all the tools you need to gain a detailed understanding of the subject.
INSIDE:
System Representation * The Load Flow Problem * Reference System * Jacobi Method • Gauss-Seidel Method * Z-Matrix Methods * Newton-Raphson Methods * Newton-Raphson Method Using Cartesian Coordinates * Newton-Raphson Method Using Polar Coordinates * Fast Decoupled Method * DC Load Flow * Voltage Control: Generators * Voltage Control: On-Load Tap Changing Transformers * Results Output * Solution Difficulties * Appendix: Starting Voltages
About the Author
Lynn Powell is an electrical engineer who is now retired after spending 40 years with various U.K. organizations: the South Wales Electricity Board, the Central Electricity Generating Board, the British Steel Corporation, and the Ministry of Defense. For virtually all that time he was engaged in power system design, for land-based and ship-based systems. He holds a master's degree in power systems engineering from the University of Manchester Institute of Science and Technology and is a Fellow of the Institution of Electrical Engineers. A Welshman by birth, he lives in Wiltshire, England.
Most helpful customer reviews
0 of 0 people found the following review helpful.
Excellent book for power systems students and practicing engineers!
By Calc
This is an excellent book on the subject of load flow, a subject that's not really well understood by many students and engineers. This book takes about a chapter of what would be in a typical power analysis textbook and breaks it down into manageable, small chapters that are probably no more than 10 pages each. However, that's an oversimplification of this book. No, this book is not like typical textbooks. It goes beyond and really delves into what load flow is and how to solve it using various techniques to include on-load tap changing transformers and multiple sources of generation. It gives the reasons behind why to use certain analyses and covers more than most texts do about load flow. It defines the load flow problem physically and mathematically, while typical texts often skip the physical definition all together and expect a beginning student to "know" what the math really means in a physical setting. This all comes from an expert on the subject who has many years experience on the topic of load flow. In addition, the text gives excellent continuing reading references on the subject.
One other reviewer criticized the book for not having end of chapter problems, but I don't think that's the intent of this book. The book is meant to simplify the explanation of load flow for increased understanding, give the reader a physical sense of what the analysis is for, and cover more on the subject than the average textbook at the same time. Therefore, it's probably meant to be a very good reference and learning tool. Any basic power systems analysis text can offer "practice problems" on the subject, but they often butcher the explanation of how to solve those problems by giving often vague reasons behind the analyses and stuffing the entire subject of load flow/power flow into one very long chapter that's sub-divided into tiny, dirty sections chalked full of math and not much verbal explanation. I believe it was Einstein who said that if you cannot explain something simply, you don't fully understand it.
0 of 0 people found the following review helpful.
excellent book which is practical and makes a complicated topic ...
By Battler
Yes, excellent book which is practical and makes a complicated topic seem simple.
0 of 0 people found the following review helpful.
very good
By SALAZAR PACHECO ANGEL
It is a very good work, very ease to read and undertud.
A professional work, items with exelent professional level.
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