Ultra-high Voltage AC/DC Power Transmission

Ultra-high Voltage AC/DC Power Transmission

Author: Hao Zhou

Publisher: Springer

Published: 2017-12-21

Total Pages: 1491

ISBN-13: 3662545756

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This book addresses the latest findings on practical ultra-high voltage AC/DC (UHVAC/UHVDC) power transmission. Firstly, it reviews current constructions and future plans for major UHVDC and UHVAC projects around the world. The book subsequently illustrates the basic theories, economic analysis, and key technologies of UHV power networks in detail, and describes the design of the UHVAC substations and UHVDC converter stations and transmission lines. A wealth of clear and specific figures and formulas help readers to understand the fundamental theories underlying UHVAC and UHVDC technologies, as well as their developmental trends. This book is intended for graduate students, researchers and engineers in the fields of power systems and electrical engineering.


Electric Power Transmission System Engineering

Electric Power Transmission System Engineering

Author: Turan Gönen

Publisher: Wiley-Interscience

Published: 1988

Total Pages: 760

ISBN-13:

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This is a book for engineers involved with the mechanical design of electrical transmission systems. It includes a review of transmission system engineering and the basics of analysis, and then goes on to cover in detail topics such as the construction of overhead lines, structural supports, insulation requirements, vibration, sag and tension analysis, right-of-way planning and methods of locating structures and underground cables. Also included is material about cost analysis methods and techniques which are unique to transmission line design where fixed costs are shared among joint users. In addition to this the development of system reliability reporting to conform to standard requirements is covered, along with a modern, comprehensive treatment of the design aspects of electrical power systems. New topics of importance, such as fault analysis, system protection, line balancing and economic analysis are contained, with a brief review of analytical techniques which are pre-requisites to designing a system or component.


Electrical Design of Overhead Power Transmission Lines

Electrical Design of Overhead Power Transmission Lines

Author: Masoud Farzaneh

Publisher: McGraw Hill Professional

Published: 2012-09-03

Total Pages: 564

ISBN-13: 0071771921

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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


Transmission Line Reliability and Security

Transmission Line Reliability and Security

Author: Anthony J. Pansini

Publisher: CRC Press

Published: 2020-11-26

Total Pages: 335

ISBN-13: 8770222444

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This book discusses the problems of reliability caused by the deregulation of electric utilities and those of security created by the events of September 11. Author Anthony Pansini, a licensed professional engineer and Life Fellow of IEEE, suggests solutions, related to the design, construction, maintenance, and operation of transmission facilities, for maintaining and improving the reliability of deregulated transmission systems, and covers the National Transmission Grid Study in depth. He includes coverage of phenomena occurring in electric theory, in non- or semi-technical terms, for the benefit of the non-engineer.


Analysis and Design of High-voltage Transmission Lines

Analysis and Design of High-voltage Transmission Lines

Author: Jesus C. De Sosa

Publisher:

Published: 2010-11

Total Pages: 208

ISBN-13: 9781450266130

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High-voltage transmission lines link power plants to cities or population centers. Its analysis and design control how electricity can be delivered reliably and efficiently. This book provides the basic tools for analyzing high-voltage transmission lines. They include power fl ow analysis, power factor improvement, calculating inductance and capacitance, and the iterative approach in solving any transmission line problems. Chapter 10 of the book is about financing a power system. From financial point of view, it is the most important chapter in the book. The last chapter, or Chapter 11, is a design project that put together all the fine points of analysis and design.


Transmission of Electrical Power

Transmission of Electrical Power

Author: Dr. Hidaia Mahmood Alassouli

Publisher: Dr. Hidaia Mahmood Alassouli

Published: 2020-04-01

Total Pages: 243

ISBN-13:

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This book includes my lecture notes for electrical power transmission course. The power transmission process, from generation to distribution is described and expressions for resistance, inductance and capacitance of high-voltage power transmission lines are developed used to determine the equivalent circuit of a three-phase transmission line. The book is divided to different learning outcomes Part 1- Describe the power transmission process, from generation to distribution. Part 2- Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line. Part 1: Describe the power transmission process, from generation to distribution. · Describe the components of an electrical power system. · Identify types of power lines, standard voltages, and components of high-voltage transmission lines (HVTL). · Describe the construction of a transmission line, galloping lines, corona effect, insulator pollution, and lightning strikes. · Explain transmission system stability in regards to power transfer, power flow division, and transfer impedance. Part 2: Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line. · List the types of conductors used in power transmission line. · Develop the expression for the inductance and capacitance of a simple, single-phase, two wire transmission line composed of solid round conductors. · Deduce the expression for the inductance and capacitance of a simple, single-phase composite (stranded) conductor line. · Derive the expression for the inductance and capacitance of three-phase lines having symmetrically and asymmetrically spacing and for bundled conductors. · Discuss the effect of earth on the capacitance of three-phase transmission lines. · Derive the short transmission lines models and medium transmission lines models.


Corona Performance of High-voltage Transmission Lines

Corona Performance of High-voltage Transmission Lines

Author: P. Sarma Maruvada

Publisher: Research Studies Press Limited

Published: 2000

Total Pages: 336

ISBN-13:

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Corona performance is an important consideration in electrical design and operation of high-voltage AC and DC transmission lines. The choice of conductors is based primarily on the environmental impact aspects of corona performance. Increasingly higher transmission voltages in modern electric power systems has led to considerable amounts of research on different aspects of corona performance of transmission lines. This book brings together research and covers, physical, analytical and engineering aspects of corona performance of both AC and DC transmission lines.