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Electrical Design of Overhead Power Transmission Lines
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Electrical Design of Overhead Power Transmission Lines

Book Details

Format Hardback or Cased Book
ISBN-10 0071771913
ISBN-13 9780071771917
Publisher McGraw-Hill Education - Europe
Imprint McGraw-Hill Professional
Country of Manufacture US
Country of Publication GB
Publication Date Oct 16th, 2012
Print length 560 Pages
Weight 916 grams
Dimensions 23.50 x 16.00 x 3.50 cms
Product Classification: Electrical engineering
Ksh 26,650.00
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This valuable guide details all aspects of design of overhead power transmission lines—from matrix methods and symmetrical components to transient thermal rating--aimed at preparing users for actual transmission line layouts.

Complete coverage of power line design and implementation

"This text provides the essential fundamentals of transmission line design. It is a good blend of fundamental theory with practical design guidelines for overhead transmission lines, providing the basic groundwork for students as well as practicing power engineers, with material generally not found in one convenient book." IEEE Electrical Insultation Magazine

Electrical Design of Overhead Power Transmission Lines discusses everything electrical engineering students and practicing engineers need to know to effectively design overhead power lines. Cowritten by experts in power engineering, this detailed guide addresses component selection and design, current IEEE standards, load-flow analysis, power system stability, statistical risk management of weather-related overhead line failures, insulation, thermal rating, and other essential topics. Clear learning objectives and worked examples that apply theoretical results to real-world problems are included in this practical resource.

Electrical Design of Overhead Power Transmission Lines covers:

  • AC circuits and sequence circuits of power networks
  • Matrix methods in AC power system analysis
  • Overhead transmission line parameters
  • Modeling of transmission lines
  • AC power-flow analysis using iterative methods
  • Symmetrical and unsymmetrical faults
  • Control of voltage and power flow
  • Stability in AC networks
  • High-voltage direct current (HVDC) transmission
  • Corona and electric field effects of transmission lines
  • Lightning performance of transmission lines
  • Coordination of transmission line insulation
  • Ampacity of overhead line conductors

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