Power Systems Modelling and Fault Analysis: Theory and Practice

Power Systems Modelling and Fault Analysis: Theory and Practice

by Nasser Tleis
Power Systems Modelling and Fault Analysis: Theory and Practice

Power Systems Modelling and Fault Analysis: Theory and Practice

by Nasser Tleis

eBook

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Overview

This book provides a comprehensive practical treatment of the modelling of electrical power systems, and the theory and practice of fault analysis of power systems covering detailed and advanced theories as well as modern industry practices.The continuity and quality of electricity delivered safely and economically by today’s and future’s electrical power networks are important for both developed and developing economies. The correct modelling of power system equipment and correct fault analysis of electrical networks are pre-requisite to ensuring safety and they play a critical role in the identification of economic network investments. Environmental and economic factors require engineers to maximise the use of existing assets which in turn require accurate modelling and analysis techniques. The technology described in this book will always be required for the safe and economic design and operation of electrical power systems. The book describes relevant advances in industry such as in the areas of international standards developments, emerging new generation technologies such as wind turbine generators, fault current limiters, multi-phase fault analysis, measurement of equipment parameters, probabilistic short-circuit analysis and electrical interference.

Product Details

ISBN-13: 9780128151181
Publisher: Elsevier Science
Publication date: 06/12/2019
Sold by: Barnes & Noble
Format: eBook
Pages: 940
File size: 59 MB
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About the Author

Nasser Tleis has extensive experience in electrical power engineering in the following areas: power plant performance specification including steady state and transient analysis, substation insulation coordination, planning and design of transmission systems, voltage control strategies and reactive compensation planning, power systems thermal and loadflow analysis, voltage stability, frequency control and stability, transient and dynamic stability including long-term dynamics, faults and short-circuit analysis, multiphase power flow and unbalance analysis, analysis and measurement of harmonic distortion and voltage flicker.

Table of Contents

Introduction; Symmetrical components; Modelling of single circuit and multiple circuit overhead lines and cables; Theory & practice of symmetrical component sequence modelling; Modelling of transformers and phase shifters; Analysis of short circuit current waveform and its components; Short-circuit fault current analysis; IEC 60909, US ANSI/IEEE & UK ER short circuit analysis techniques; Analysis of large power systems; Practical techniques; Short circuit earth return current analysis

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A comprehensive, practical treatment of the modeling of electrical power systems and the theory and practice of fault analysis

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