A practical, hands-on approach to power distribution system reliability
As power distribution systems age, the frequency and duration of consumer interruptions will increase significantly. Now more than ever, it is crucial for students and professionals in the electrical power industries to have a solid understanding of designing the reliable and cost-effective utility, industrial, and commercial power distribution systems needed to maintain life activities (e.g., computers, lighting, heating, cooling, etc.).
This books fills the void in the literature by providing readers with everything they need to know to make the best design decisions for new and existing power distribution systems, as well as to make quantitative "cost vs. reliability" trade-off studies. Topical coverage includes:
Reliability analysis of complex network configurations
Designing reliability into industrial and commercial power systems
Application of zone branch reliability methodology
Equipment outage statistics
Deterministic planning criteria
Customer interruption for cost models for load-point reliability assessment
Isolation and restoration procedures
And much more
Each chapter begins with an introduction and ends with a conclusion and a list of references for further reading. Additionally, the book contains actual utility and industrial power system design problems worked out with real examples, as well as additional problem sets and their solutions. Power Distribution System Reliability is essential reading for practicing engineers, researchers, technicians, and advanced undergraduate and graduate students in electrical power industries.
"synopsis" may belong to another edition of this title.
ALI A. CHOWDHURY, PhD, FIEEE, is Director of Regional Transmission for the California Independent System Operator. He has nearly thirty years of experience in teaching, research and development, electric utility industry, electric equipment manufacturing, and consulting in power system reliability and security assessments.
DON O. KOVAL, PhD, FIEEE, is a Professor in the Department of Electrical and Computer Engineering at the University of Alberta, Canada. Previously, he worked as a distribution special studies engineer for B.C. Hydro and Power Authority in Vancouver and as a subtransmission design engineer for Saskatchewan Power.
A practical, hands-on approach to power distribution system reliability
As power distribution systems age, the frequency and duration of consumer interruptions will increase significantly. Now more than ever, it is crucial for students and professionals in the electrical power industries to have a solid understanding of designing the reliable and cost-effective utility, industrial, and commercial power distribution systems needed to maintain life activities (e.g., computers, lighting, heating, cooling, etc.).
This books fills the void in the literature by providing readers with everything they need to know to make the best design decisions for new and existing power distribution systems, as well as to make quantitative "cost vs. reliability" trade-off studies. Topical coverage includes:
Reliability analysis of complex network configurations
Designing reliability into industrial and commercial power systems
Application of zone branch reliability methodology
Equipment outage statistics
Deterministic planning criteria
Customer interruption for cost models for load-point reliability assessment
Isolation and restoration procedures
And much more
Each chapter begins with an introduction and ends with a conclusion and a list of references for further reading. Additionally, the book contains actual utility and industrial power system design problems worked out with real examples, as well as additional problem sets and their solutions. Power Distribution System Reliability is essential reading for practicing engineers, researchers, technicians, and advanced undergraduate and graduate students in electrical power industries.
A practical, hands-on approach to power distribution system reliability
As power distribution systems age, the frequency and duration of consumer interruptions will increase significantly. Now more than ever, it is crucial for students and professionals in the electrical power industries to have a solid understanding of designing the reliable and cost-effective utility, industrial, and commercial power distribution systems needed to maintain life activities (e.g., computers, lighting, heating, cooling, etc.).
This books fills the void in the literature by providing readers with everything they need to know to make the best design decisions for new and existing power distribution systems, as well as to make quantitative cost vs. reliability trade-off studies. Topical coverage includes:
Reliability analysis of complex network configurations
Designing reliability into industrial and commercial power systems
Application of zone branch reliability methodology
Equipment outage statistics
Deterministic planning criteria
Customer interruption for cost models for load-point reliability assessment
Isolation and restoration procedures
And much more
Each chapter begins with an introduction and ends with a conclusion and a list of references for further reading. Additionally, the book contains actual utility and industrial power system design problems worked out with real examples, as well as additional problem sets and their solutions. Power Distribution System Reliability is essential reading for practicing engineers, researchers, technicians, and advanced undergraduate and graduate students in electrical power industries.
"About this title" may belong to another edition of this title.
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Condition: New. Reliable power distribution systems are essential to maintain a functioning society. This book covers the fundamentals of reliability analysis as they apply to the planning and design of utility, industrial, and commercial electric power distribution systems. Series: IEEE Press Series on Power Engineering. Num Pages: 532 pages, Illustrations. BIC Classification: THRB. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly; (UU) Undergraduate. Dimension: 236 x 161 x 31. Weight in Grams: 998. . 2009. 1st Edition. Hardcover. . . . . Seller Inventory # V9780470292280
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Gebunden. Condition: New. ALI A. CHOWDHURY, PhD, FIEEE, is Director of Regional Transmission for the California Independent System Operator. He has nearly thirty years of experience in teaching, research and development, electric utility industry, electric equipment manufacturing, a. Seller Inventory # 446912167
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