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Power System Load Flow Analysis
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Power System Load Flow Analysis

Power System Load Flow Analysis

Formulate nonlinear load flow equations - Develop solution methods and algorithms - Master a range of load flow analysis techniques - Model networks and equipment mathematically

Lynn Powell - Collection Professional Engineering

181 pages, parution le 26/01/2005

Résumé

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.

Sommaire

  • 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
Voir tout
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Caractéristiques techniques

  PAPIER
Éditeur(s) Mc Graw Hill
Auteur(s) Lynn Powell
Collection Professional Engineering
Parution 26/01/2005
Nb. de pages 181
Format 15,5 x 23,5
Couverture Relié
Poids 442g
Intérieur Noir et Blanc
EAN13 9780071447799
ISBN13 978-0-07-144779-9

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